Prof Targo Kalamees | Material Degradation and Corrosion | Outstanding Scientist Award

Prof Targo Kalamees | Material Degradation and Corrosion | Outstanding Scientist Award

Prof. Targo Kalamees is an internationally recognized expert in building physics, with more than two decades of experience in research, teaching, and scientific leadership. He currently serves as a tenured full professor at the School of Engineering, Department of Civil Engineering and Architecture at Tallinn University of Technology. His work focuses on the hygrothermal behavior of buildings, energy efficiency, renovation strategies, and climate resilience in construction. Through a career marked by interdisciplinary research and global collaboration, he has made transformative contributions to sustainable building technologies and design methodologies tailored for cold and variable climates.

Prof Targo Kalamees, Tallinn University of Technology, Estonia

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🎓 Education

Prof. Targo Kalamees has a robust academic foundation in civil engineering and building physics. He earned his Doctoral Degree in 2006 from Tallinn University of Technology, focusing on hygrothermal criteria for the design and simulation of buildings 🏗️📊. Prior to this, he completed a Master’s Degree in 1999 at the same university, specializing in the hygrothermal performance of externally insulated walls 🧱💧. His academic journey began with a MSc-equivalent degree in Civil Engineering (1996) and an earlier diploma in geodesy from TTK University (1991) 📐🌍. This progressive education laid the foundation for his scientific excellence in sustainable construction and building physics 🏠📚.

🏛️ Experience

Prof. Targo Kalamees has extensive academic and research experience in building physics and energy efficiency. Since 2018, he has been a Tenured Full Professor at Tallinn University of Technology, where he also previously served as Head of the Chair of Building Physics and Energy Efficiency. He has conducted postdoctoral research at Helsinki University of Technology and was a Visiting Research Fellow at Lund University. His roles have centered on climate-resilient buildings, moisture-safe construction, and sustainable renovation strategies, combining leadership, scientific excellence, and international collaboration. 🧱🌡️🏛️🔬🌐

🎓 Supervisory Excellence

Prof. Targo Kalamees is a highly accomplished doctoral supervisor, having successfully guided over ten PhD candidates in building physics and sustainable construction 🏗️📚. His students’ research spans key areas such as energy renovation of apartment buildings, air leakage and thermal bridge modeling, hygrothermal analysis of wall systems, and renovation strategies for wooden structures 🌬️🏡🌡️. His guidance has shaped groundbreaking work on nearly zero-energy buildings (nZEB), prefabricated insulation systems, and durable retrofit technologies 🔋🧱🔧. With deep expertise and visionary mentorship, he continues to empower future researchers to tackle climate-responsive and energy-efficient building challenges 🧑‍🏫🌍🌱.

🔬 Research Focus

Prof. Targo Kalamees focuses on advancing sustainable and resilient building technologies through research in building physics, particularly hygrothermal performance of envelope structures 🧱💧🌡️. His work integrates modelling, lab experiments, and field studies to understand and mitigate heat loss, air leakage, and thermal bridging in buildings 🧪🔍🏠. He is a pioneer in climate-resilient renovation, promoting indoor comfort, energy efficiency, and the circular economy in construction ♻️🌍. His goal is to develop future-proof buildings that withstand evolving climate challenges while supporting low-carbon lifestyles 🌦️🔋. His research bridges engineering, environmental sustainability, and applied building science 🛠️📊.

Publications 📚

Indoor Climate Loads for Dwellings in Different Cold Climates to Assess Hygrothermal Performance of Building Envelopes
Authors: Ilomets, S.; Kalamees, T.; Tariku, F.
Journal: Canadian Journal of Civil Engineering, 2019

Influence of Interior Layer Properties to Moisture Dry-Out of CLT Walls
Authors: Kukk, V.; Külaots, A.; Kers, J.; Kalamees, T.
Journal: Canadian Journal of Civil Engineering, 2019

Influence of Window Details on the Energy Performance of an nZEB
Authors: Kalbe, K.; Kalamees, T.
Journal: Journal of Sustainable Architecture and Civil Engineering, 2019

Renovation of Apartment Buildings with Prefabricated Modular Panels
Authors: Kuusk, K.; Pihelo, P.; Kalamees, T.
Journal: E3S Web of Conferences, 2019

Summer Thermal Comfort in New and Old Apartment Buildings
Authors: Maivel, M.; Kurnitski, J.; Kalamees, T.
Journal: Windsor Conference Proceedings, 2019

The Effects of Production Technologies on the Air Permeability and Crack Development of Cross-Laminated Timber
Authors: Kukk, V.; Kalamees, T.; Kers, J.
Journal: Journal of Building Physics, 2019

Indoor Hygrothermal Loads for the Deterministic and Stochastic Design of the Building Envelope for Dwellings in Cold Climates
Authors: Ilomets, S.; Kalamees, T.; Vinha, J.
Journal: Journal of Building Physics, 2018

Internal Moisture Excess of Residential Buildings in Finland
Authors: Vinha, J.; Salminen, M.; Salminen, K.; Kalamees, T.; Kurnitski, J.; Kiviste, M.
Journal: Journal of Building Physics, 2018

Assoc. Prof. Dr Chenxin Ran | Thin Film Technologies | Best Researcher Award

Assoc. Prof. Dr Chenxin Ran | Thin Film Technologies | Best Researcher Award

Assoc. Prof. Dr. Chenxin Ran is a leading scientist in the field of materials science, specializing in perovskite-based solar cell technologies. Currently affiliated with the Institute of Flexible Electronics at Northwestern Polytechnical University, Xi’an, China, he has established a strong reputation for his pioneering work on lead-free and tandem perovskite photovoltaics. He has authored over 40 high-impact SCI papers, many of which are recognized as ESI highly cited and hot topic papers, with a total citation count exceeding 6,800 and an h-index of 40. Dr. Ran is widely regarded as a significant contributor to the advancement of next-generation optoelectronic materials and devices.

Assoc. Prof. Dr Chenxin Ran, Institute of Flexible Electronics, China

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🎓 Education

Assoc. Prof. Dr. Chenxin Ran holds a Ph.D. in Electronic Science & Technology from Xi’an Jiaotong University (2012–2016) 🎓🔬, where he specialized in advanced optoelectronic materials and solar energy technologies. During this time, he also conducted international research as a visiting scholar in the United States 🌍🧪. He earned his Bachelor’s degree in Applied Chemistry from Xi’dian University (2005–2009) ⚗️📘, gaining a strong foundation in materials chemistry and nanoscience. This blend of chemistry and electronics education positioned him to innovate in perovskite photovoltaics and lead-free solar cell development 🌞🧫.

💼 Experience

Dr. Chenxin Ran is an Associate Professor at Northwestern Polytechnical University (2020–present), where he advances research in narrow/wide bandgap perovskites and tandem solar cells ☀️🔋. Previously, he worked as a Postdoctoral Researcher and Lecturer at Xi’an Jiaotong University (2016–2020), focusing on lead-free Sn-based perovskite solar cells ⚗️♻️. He also gained international research experience as a Visiting Ph.D. Scholar at Case Western Reserve University (2014–2015), collaborating on carbon-based materials for perovskite applications 🌍🧫. His rich experience across top institutions reflects strong expertise in energy materials, device engineering, and interdisciplinary solar technology 🌱🔧.

🏆 Achievements 

Assoc. Prof. Dr. Chenxin Ran has published over 40 SCI-indexed papers as first or corresponding author in top journals such as Chem. Soc. Rev. (2), Adv. Mater. (3), Joule, Energy Environ. Sci., ACS Energy Lett. (5), and Nano Lett. 🧪📘. His work has been cited more than 6,800 times with an h-index of 40 📈. He has authored 7 ESI highly cited papers and 2 hot topic papers 🔥. He leads national and provincial-level projects 🎯, serves on editorial boards of top journals 📚, and received the Scientist Award from IAAM in 2024 🏆🌍, reflecting his global scientific impact.

🏅Awards

Assoc. Prof. Dr. Chenxin Ran has received several prestigious recognitions for his outstanding contributions to materials science and renewable energy research. In October 2024, he was honored with the Scientist Award from the International Advanced Materials Society (IAAM) 🧪🏆. Earlier, his Ph.D. work was celebrated as the Excellent Doctoral Dissertation at Xi’an Jiaotong University in 2019 📘🎓. He was named Outstanding PhD Graduate in 2016 and was selected for the CSC Joint Doctoral Student Program in 2014 for international research exchange 🌍🔬. These accolades highlight his excellence in academic research and global scientific collaboration.

🔬 Research Focus

Assoc. Prof. Dr. Chenxin Ran focuses on cutting-edge research in perovskite-based tandem solar cells, particularly Perovskite/Perovskite and Perovskite/Silicon architectures. His work aims to achieve high-efficiency, cost-effective, and stable photovoltaic devices by engineering crystal growth, interface layers, and defect passivation. He explores both lead-free Sn-based and wide-bandgap perovskites for environmentally friendly energy solutions. Through innovative fabrication techniques and molecular design, his research supports the future of green energy and next-generation optoelectronics, paving the way for scalable and commercially viable solar technologies. His interdisciplinary approach bridges materials science, chemistry, and electronics for global sustainable development. 🌍🔋🔧

📘 Publications

Stabilizing Black-Phase Formamidinium Perovskite Formation at Room Temperature and High Humidity
Authors: W. Hui, L. Chao, H. Lu, F. Xia, Q. Wei, Z. Su, T. Niu, L. Tao, B. Du, D. Li, Y. Wang, C. Ran, et al.
Journal: Science, Vol. 371, Issue 6536, 2021, Pages 1359–1364

Defects in Metal Triiodide Perovskite Materials Towards High-Performance Solar Cells: Origin, Impact, Characterization, and Engineering
Authors: C. Ran, J. Xu, W. Gao, C. Huang, S. X. Dou
Journal: Chemical Society Reviews, Vol. 47, Issue 12, 2018, Pages 4581–4610

High‐Quality Cs₂AgBiBr₆ Double Perovskite Film for Lead‐Free Inverted Planar Heterojunction Solar Cells with 2.2% Efficiency
Authors: W. Gao, C. Ran, J. Xi, B. Jiao, W. Zhang, M. Wu, X. Hou, Z. Wu
Journal: ChemPhysChem, Vol. 19, Issue 14, 2018, Pages 1696–1700

Solvent Engineering of the Precursor Solution Toward Large‐Area Production of Perovskite Solar Cells
Authors: L. Chao, T. Niu, W. Gao, C. Ran, L. Song, Y. Chen, W. Huang
Journal: Advanced Materials, Vol. 33, Issue 14, 2021, Article 2005410

Conjugated Organic Cations Enable Efficient Self-Healing FASnI₃ Solar Cells
Authors: C. Ran, W. Gao, J. Li, J. Xi, L. Li, J. Dai, Y. Yang, X. Gao, H. Dong, B. Jiao, Z. Wu, M. Kanatzidis
Journal: Joule, Vol. 3, Issue 12, 2019, Pages 3072–3087

Metal Halide Perovskite for Next-Generation Optoelectronics: Progresses and Prospects
Authors: H. Dong, C. Ran, W. Gao, M. Li, Y. Xia, W. Huang
Journal: eLight, Vol. 3, Issue 1, Article 3, 2023

Mr Weihai Xue | Coatings and Surface Treatments | Best Researcher Award

Mr Weihai Xue | Coatings and Surface Treatments | Best Researcher Award

Mr. Weihai Xue is a dedicated researcher affiliated with the Institute of Metal Research, Chinese Academy of Sciences, based in Shenyang, China. He has made substantial contributions to materials science, particularly in the domains of wear resistance, protective coatings, and tribological performance for advanced engineering applications. His research aims to enhance the durability and efficiency of materials used in critical industrial environments, such as wind turbine blades and aero-engines. With an impressive citation record and a strong portfolio of publications in high-quality journals, Mr. Xue has established himself as a valuable contributor to applied surface engineering.

Mr Weihai Xue, Institute of Metal Research, Chinese Academy of Sciences, China

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🎓 Education

Mr. Weihai Xue is affiliated with the prestigious Institute of Metal Research, Chinese Academy of Sciences, which indicates a strong educational foundation in materials science and engineering 🧪📘. Although his exact academic degrees are not detailed, his prolific contributions to high-impact journals and experimental research suggest he holds postgraduate-level training, likely including a master’s or Ph.D. in tribology, surface engineering, or materials physics 🎓🔬. His expertise in wear resistance, coatings, and erosion mechanics demonstrates advanced knowledge developed through intensive academic and laboratory experience ⚙️🧠, establishing him as a well-trained and competent researcher.

🏢 Experience

Mr. Weihai Xue is a research scientist at the Institute of Metal Research, Chinese Academy of Sciences 🏢. His expertise lies in surface engineering, material protection, and advanced coating technologies 🔬🧪. He actively collaborates with industrial and academic partners to develop high-performance coatings for aerospace and renewable energy applications ✈️🌬️. His work addresses extreme conditions such as high-temperature wear, corrosion, and droplet erosion 🌡️💧. Mr. Xue contributes significantly through hands-on experimentation, scientific analysis, and impactful publications 📚📈. His experience reflects innovation, technical excellence, and dedication to solving real-world engineering challenges ⚙️🔍.

🔬 Research Focus

Mr. Weihai Xue’s research focuses on surface engineering, material protection, and erosion mechanisms in harsh environments such as high-speed impact and corrosive conditions 🌪️🛡️. He investigates fretting wear, anti-corrosive coatings, and erosion resistance in both metallic and polymer materials ⚙️🧪. His work is highly relevant to aerospace and renewable energy applications ✈️💨. Using advanced microscopy and profilometry 🔍🧫, he explores the relationship between coating composition and mechanical behavior. His goal is to develop durable coatings that prevent damage, extend service life, and improve material performance in real-world industrial conditions 🏭🧱.

📘 Publications

Study on Fretting Wear Behavior of Titanium Alloys Sliding Against Various Friction Pair Materials at Room Temperature for Aero-Engine Applications
Authors: Abdur Razzak, Sixiang Wang, Weihai Xue, Siyang Gao, Deli Duan
Journal: Journal of Bio- and Tribo-Corrosion (2025)

Effect of Sliding Speed on Anti-aluminium Adhesion Behaviour of TiB₂ Deposited on Titanium Alloy under High Temperature
Authors: Bi Wu, Siyang Gao, Weihai Xue, Shu Li, Deli Duan
Journal: Surface Technology (2025)

A Comparative Study of the Differences in Microstructure and Properties of Tribo-Layers of DD5 Nickel-Based Single-Crystal Superalloys Caused by External Heat and Friction Heat in Dry Sliding Wear
Authors: Shuai Yang, Siyang Gao, Weihai Xue, Wenfeng Yu, Deli Duan
Journal: Wear (2025)

Oxidation, Hot Corrosion, and Interdiffusion Behavior of NiAlTa Coating by Electro-Spark Deposition
Authors: Shuai Yang, Siyang Gao, Weihai Xue, Bi Wu, Deli Duan
Journal: Rare Metals (2025)

Preparation of Protective Coatings for the Leading Edge of Wind Turbine Blades and Investigation of Their Water Droplet Erosion Behavior
Authors: Zilong Zheng, Haijing Sun, Weihai Xue, Xin Zhou, Jie Sun
Journal: Wear (2024)

Prof Can Li | Electrical Properties of Materials | Best Researcher Award

Prof Can Li | Electrical Properties of Materials | Best Researcher Award

Prof. Dr. Can Li is an innovative researcher and Assistant Professor at the University of Hong Kong, specializing in neuromorphic computing, AI hardware, and memristor-based systems 🧬💾. He earned his Ph.D. in Electrical and Computer Engineering from UMass Amherst, after completing his M.S. and B.S. in Microelectronics at Peking University 📘🔌. With over 90 publications, HK$45M+ in grants, and multiple patents, his work bridges advanced electronics, machine learning, and brain-inspired systems 🌍📊. He actively mentors students, collaborates internationally, and serves on major editorial boards, shaping the future of intelligent computing technology 🚀🔍.

Prof Can Li, The University of Hong Kong, Hong Kong

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Education 🎓

Prof. Dr. Can Li earned his Ph.D. in Electrical and Computer Engineering from the University of Massachusetts Amherst in 2018, under the mentorship of Prof. Qiangfei Xia 🧠📘. His dissertation, “CMOS Compatible Memristor Networks for Brain-Inspired Computing”, laid the foundation for his cutting-edge work in neuromorphic hardware ⚙️🧬. He holds both M.S. (2012) and B.S. (2009) degrees in Microelectronics from Peking University, China, mentored by Prof. Wengang Wu 📡🔌. His academic path combines solid-state electronics, AI hardware, and advanced semiconductor design, empowering his innovations in brain-inspired and in-memory computing systems 🌐🧑‍🔧.

Experience 💼

Prof. Can Li is currently an Assistant Professor at The University of Hong Kong (2020–Present) 🇭🇰, serving in the Department of Electrical and Electronic Engineering ⚡. His academic role focuses on advanced system design, hardware acceleration, and energy-efficient computing 💻🔋. Before this, he worked as a Research Associate at Hewlett Packard Labs in Palo Alto, California (2018–2020) 🇺🇸, contributing to architectural innovation within the System Architecture Lab 🧠🛠️. His industry and academic experience reflect a deep commitment to cutting-edge research in computer architecture and system performance optimization across real-world and theoretical applications 🚀📊.

Achievements & Innovations 🏅

Prof. Can Li has received numerous prestigious honors, including being ranked in the Top 1% worldwide by citations (Clarivate, 2022–2024) 🌍📊, the Croucher Tak Wah Mak Innovation Award (2023) 🧠🏆, the RGC Early Career Award (2021) 🧑‍🔬, and the NSFC Excellent Young Scientists Fund (2021) 🌟. He holds 17 granted patents across the US and China, focused on analog content-addressable memory (CAM), fuzzy search, optical TCAMs, and neuromorphic systems 🔧💡. These contributions demonstrate his pioneering work at the interface of hardware acceleration, AI computing, and next-gen memory systems 🚀🖥️.

Book Contributions 📘

Prof. Can Li has significantly contributed to the field of neuromorphic and in-memory computing through key book chapters in high-impact scientific texts. He co-authored “In-Memory Computing with Non-volatile Memristor CAM Circuits” and “Ta/HfO₂ Arrays for In-Memory Memristor Computing” in Memristor Computing Systems (Springer, 2022) 📘⚡. Additionally, he authored “Silicon Based Memristor Devices and Arrays” in the Handbook of Memristor Networks (Springer, 2019) 🔍🧠. These works showcase his pioneering role in advancing memristor technology and its integration into next-generation computational architectures 🖥️🧩.

Research Focus 🔬

Prof. Can Li’s research centers on cutting-edge innovations in artificial intelligence hardware and emerging memory technologies. His work focuses on developing AI inference and training accelerators using advanced memristor-based architectures 🧠💾. He explores novel applications of memristor crossbar arrays, including image processing, hardware security, and pattern matching 🖼️🔐🔍. A core part of his research also involves the CMOS-compatible integration of memristor devices at the array level, enhancing scalability and manufacturability ⚙️🔧. By bridging nanotechnology with AI computing, Prof. Li is advancing the future of energy-efficient, high-performance computing systems for next-generation intelligent electronics 🚀🖥️.

Publications 📚

Efficient Nonlinear Function Approximation in Analog Resistive Crossbars for Recurrent Neural Networks

Authors: Junyi Yang, Ruibin Mao, Mingrui Jiang, Can Li, Arindam Basu
Journal: Nature Communications, 2025

Current Opinions on Memristor-Accelerated Machine Learning Hardware

Authors: Mingrui Jiang, Yichun Xu, Zefan Li, Can Li
Journal: Current Opinion in Solid State and Materials Science, 2025
Emojis: 💾🧠🧩📈

Efficient Coherent Polarization Beam Combining of 16-Channel Femtosecond Fiber Lasers

Authors: Jiayi Zhang, Bo Ren, Can Li, Wenxue Li, Pu Zhou
Journal: Guangxue Xuebao/Acta Optica Sinica, 2025

Research Progress of Ultrafast Fiber Laser Amplifier Based on Gain Managed Nonlinearity (Invited)

Authors: Can Li, Bo Ren, Kun Guo, Jingyong Leng, Pu Zhou
Journal: Hongwai yu Jiguang Gongcheng/Infrared and Laser Engineering, 2025

Event-Based Multi-Object Tracking With Sparse Motion Features

Authors: Song Wang, Zhu Wang, Can Li, Xiaojuan Qi, Hayden Kwok Hay So
Journal: IEEE Access, 2025

An InGaZnO Synaptic Transistor Using Titanium-Oxide Traps at Back Channel for Neuromorphic Computing

Authors: B. F. Yang, Chen Zhang, Z. H. Zhang, Can Li, Xiaodong Huang
Journal: IEEE Transactions on Electron Devices, 2025

Prof. Dr Yuan Xu | Biomaterials | Best Researcher Award

Prof. Dr Yuan Xu | Biomaterials | Best Researcher Award

Prof. Dr. Yuan Xu is a renowned physician-scientist and Chief Physician at the China-Japan Friendship Hospital 🏥. Holding both an MD and PhD, he specializes in the integration of Traditional Chinese Medicine (TCM) and Western medicine 🔬🌱. He serves as Deputy Director of the National Center for Integrated Medicine and is a Master’s Supervisor guiding future clinicians 🎓🧑‍⚕️. As a former visiting scholar at Yale University, his global outlook informs research on rheumatology, fibromyalgia, and chronic disease care 🌍💡. With 48 publications, 12 SCI papers, and multiple funded projects, he is a leader in translational healthcare innovation 🧠🏆.

Prof. Dr Yuan Xu, China-Japan Friendship Hospital, China

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Education 🎓

Prof. Dr. Yuan Xu holds both an MD and a PhD, establishing a strong foundation in clinical medicine and biomedical research 🩺🔬. His dual training bridges Western medical science and Traditional Chinese Medicine (TCM), enabling an integrative approach to healthcare 🌍🌱. He further enriched his academic profile as a visiting scholar at Yale University, USA, where he engaged in global research collaboration and advanced clinical studies 🇺🇸📖. This diverse educational background equips him with a comprehensive and holistic view of medicine, fueling his innovative work in rheumatology and chronic disease treatment 💡🧠.

Experience 🏥

Prof. Dr. Yuan Xu is a seasoned Chief Physician at the China-Japan Friendship Hospital and serves as a Master’s Supervisor, nurturing the next generation of clinicians and researchers 🎓👨‍🏫. As Deputy Director at the National Center for Integrated Traditional Chinese and Western Medicine, he leads national initiatives merging TCM with modern medical science ⚕️🌿. Recognized as an Innovative Young Talent and a “New 125” TCM Leader, he also gained international exposure as a visiting scholar at Yale University 🌍📚. His career spans clinical care, policy leadership, and translational research in chronic disease management 🧠🦴.

Contributions 📖

Prof. Dr. Yuan Xu has made impactful contributions in three core research areas: the development of diagnostic and treatment protocols for rheumatoid arthritis using Traditional Chinese Medicine (TCM) 🌿🦴, the advancement of fibromyalgia care strategies 🧠💊, and the management of integrated TCM and Western medical systems 🏥⚖️. He has led 12 major research projects, securing over 10 million yuan in funding 💰📊. His academic output includes 48 publications, with 12 SCI-indexed papers, where he served as first or corresponding author ✍️🔍. His work bridges clinical care and scientific discovery in modern integrative medicine 🧬🩺.

Research Focus 🔬

Prof. Dr. Yuan Xu’s research primarily targets rheumatoid diseases, with a strong emphasis on rheumatoid arthritis and fibromyalgia syndrome 🦴🧬. His work integrates Traditional Chinese Medicine (TCM) and modern biomedical approaches to develop more effective diagnostic models and personalized treatments 🌱⚕️. He investigates immune system dysregulation, inflammatory pathways, and syndrome differentiation in chronic joint disorders 🔍💊. Through national and international collaborations, including with Yale University, he bridges ancient practices with advanced clinical research 🏥🌍. His translational focus ensures that findings directly improve patient outcomes in chronic rheumatologic care 📈🧑‍⚕️.

Publications 📚

Early prediction of bone destruction in rheumatoid arthritis through machine learning analysis of plasma metabolites
Authors: Wang Zihan, Lan Tianyi, Jiao Yi, Tao Qingwen, Xu Yuan
Journal: Arthritis Research and Therapy, 2025 🧠💉📊

Clinical Characteristics and Influencing Factors of Rheumatoid Arthritis in Patients with Cold Dampness Obstruction Syndrome
Authors: Chen Yanyu, Li Yanqi, Liu Longxiao, Xu Yuan, Tao Qingwen
Journal: Chinese Journal of Experimental Traditional Medical Formulae, 2025 🌿🦴📘

Integrated phytochemistry and network pharmacology analysis to reveal effective substances and mechanisms of Bushen Quhan Zhiwang decoction in the treatment of rheumatoid arthritis
Authors: Zhang Liubo, Yan Yu, Ma Ru, Tao Qingwen, Xu Yuan
Journal: Journal of Ethnopharmacology, 2024 🌱⚗️🔎

Assoc. Prof. Dr Inigo Flores Ituarte | Sustainability in Material Science | Best Researcher Award

Assoc. Prof. Dr Inigo Flores Ituarte | Sustainability in Material Science | Best Researcher Award

Assoc. Prof. Dr. Iñigo Flores Ituarte is a leading expert in digital manufacturing and additive technologies, serving at Tampere University and as an Academy Research Fellow in Finland 🏛️🔬. With a Doctorate in Mechanical Engineering from Aalto University, his research focuses on intelligent manufacturing, design digitalization, and sustainable production 🧠⚙️📈. He has authored 50+ high-impact publications, secured €11M+ in research funding, and collaborates globally across academia and industry 🤝🌐. Also a founding member of SelectAM, his work bridges innovation, education, and entrepreneurship in advanced manufacturing systems 💡📊🚀.

Assoc. Prof. Dr Inigo Flores Ituarte, Tampere University, Finland

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Education  🎓

Dr. Iñigo Flores Ituarte holds a Doctor of Science in Mechanical Engineering from Aalto University, Finland, with a dissertation on the digitalization of additive manufacturing 🧠⚙️. He also earned an M.Sc. in Mechanical Engineering from Aalto and a B.Sc. from the Autonomous University of Barcelona, Spain 🏗️📐. He is a Docent in Digital Design and Manufacturing at Tampere University and has completed advanced pedagogical training in Finland and Denmark 👨‍🏫🧩. Fluent in Basque, Spanish, and English, his academic journey blends technical mastery, teaching excellence, and cross-cultural expertise 🌍🧑‍🔧🗣️.

Experience 🏭

Dr. Iñigo Flores Ituarte has held key academic positions including Associate Professor in Digital Manufacturing at Tampere University and Academy Research Fellow at the Research Council of Finland 🎓🔬. His previous roles span Industry Professor at Tampere, Assistant Professor at Aalborg University, and Guest Associate Professor at DTU 🔧🏛️. His industrial experience includes positions at Nokia (3D printing specialist), Alstom Wind (O&M engineer), and Konecranes (sales engineer) ⚙️📊. He is also the co-founder of SelectAM, a tech spin-off applying AI in supply chain design 🤖📈. His career blends innovation, research, and global industry impact.

Awards and Honours 🏆

In 2023, Assoc. Prof. Dr. Iñigo Flores Ituarte was awarded the Academy Research Fellow (ARF) grant by the Research Council of Finland, one of the nation’s most prestigious and competitive recognitions for early-career researchers 🚀📚. This esteemed funding supports his salary, research team, and project costs, enabling him to lead cutting-edge, high-impact research that drives scientific innovation 🔬💡. Granted to individuals with the potential to become global leaders in their field, the ARF award underscores his rising influence and leadership within the international scientific community 🌍📈. It marks a significant milestone in his academic career.

Research Focus ⚙️

Dr. Iñigo Flores Ituarte’s research focuses on digital manufacturing, additive manufacturing (3D printing), and intelligent design systems 🖨️🔧. He explores the industrialization and scalability of additive technologies, bridging rapid prototyping and full-scale production for sectors like automotive and healthcare 🚗🏥. His work emphasizes technology validation, emissions analysis, and innovation policy, integrating digital twins and AI for smart, sustainable manufacturing ♻️📈. With a strong emphasis on application-based research and industry collaboration, he contributes to advancing next-gen production systems that are efficient, flexible, and digitally integrated across global supply chains 🌍🔄🤖.

Publications 📘

Digital manufacturing applicability of a laser sintered component for automotive industry: a case study 🚗⚙️
Authors: Iñigo Flores Ituarte, Sergei Chekurov, Jukka Tuomi, Julien Etienne Mascolo, Alessandro Zanella, Patrick Springer, Jouni Partanen
Journal: Rapid Prototyping Journal 📰

Additive Manufacturing Validation Methods, Technology Transfer Based on Case Studies 🔍🏭
Authors: Iñigo Flores Ituarte, Niklas Kretzschmar, Sergei Chekurov, Jouni Partanen, Jukka Tuomi
Book Chapter: Additive Manufacturing – Developments in Training and Education 📘

Additive Manufacturing in Finland: Recommendations for a Renewed Innovation Policy 🇫🇮🧩
Authors: Iñigo Flores Ituarte, M. Salmi, R.M. Ballardini, J. Tuomi, J. Partanen
Journal: Physics Procedia 🧪

Characterization of Emissions from a Desktop 3D Printer 🌫️🖨️
Authors: L. Mendes, A. Kangas, K. Kukko, B. Mølgaard, A. Säämänen, T. Kanerva, Iñigo Flores Ituarte, M. Huhtiniemi, H. Stockmann-Juvala, J. Partanen, et al.
Journal: Journal of Industrial Ecology 🌍

The ultrasonic burnishing of cobalt-chrome and stainless steel surface made by additive manufacturing 🔧🔬
Authors: Mika Salmi, Juha Huuki, Iñigo Flores Ituarte
Journal: Progress in Additive Manufacturing 📈

3D printing and applications: Academic research through case studies in Finland 🇫🇮📚
Authors: Iñigo Flores Ituarte, E. Huotilainen, A. Mohite, S. Chekurov, M. Salmi, J. Helle, M. Wang, K. Kukko, R. Björkstrand, J. Tuomi, et al.
Conference: Proceedings of NordDesign, NordDesign 2016 🎤

Challenges to implementing additive manufacturing in globalised production environments 🌐🏗️
Authors: Iñigo Flores Ituarte, Siavash H. Khajavi, Jouni Partanen
Journal: International Journal of Collaborative Enterprise 🤝

Dr. Alice Nabatanzi | Materials Science | Best Researcher Award- 2203

Dr. Alice Nabatanzi | Materials Science | Best Researcher Award

  Senior Lecturer, Makerere University, Uganda

Dr. Alice Nabatanzi is a distinguished academic and innovator in the field of Natural Products and Phytomedicine. She founded the Natural Products Industry Advancement Network Africa (NAPIANA), as well as the Alice Mabira Foundation (AMAF), which empowers local communities in Uganda by promoting home-based cottage industries. Dr. Nabatanzi’s exceptional work earned her the Best Innovator Award at the Appropriate Technologies Expo 2023, for her creation of a sustainable water purification system. 🏆 She is an Early Career Fellow of the Organization for Women in Science for the Developing World (OWSD) and an Early Career Research Leader Fellow of the Carnegie Corporation of New York. As a Lecturer at Makerere University, she leads research that spans phytobiomolecules for disease treatment, nutraceuticals, and sustainable water solutions, impacting both human health and environmental sustainability. 🌱

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Education 🎓

Dr. Alice Nabatanzi’s educational background showcases her commitment to advancing knowledge in the field of Natural Products and Nutraceuticals. She holds a Post-Doctorate in Phytobiomolecules for human cancer treatment from the University of Pretoria in South Africa. Dr. Nabatanzi also completed a Ph.D. in Natural Products (Nutraceuticals) and M.Sc. in Natural Products Technology and Value Chains (Nutraceuticals) at Makerere University in Uganda. Additionally, she holds a B.Sc. in Ethnobotany from the College of Natural Sciences, Makerere University. 🎓 Her academic journey has provided her with a profound understanding of the healing potential of plants, focusing on medicinal plants and traditional African foods, which is reflected in her multidisciplinary research. 📚

Experience 🌿💼

Dr. Alice Nabatanzi brings a wealth of experience to her roles in both academia and community development. She is a Lecturer in Phytomedicine and Nutraceuticals at Makerere University, where she has significantly contributed to research and the education of future leaders in plant-based medicine and sustainable technologies. Her involvement with NAPIANA and AMAF shows her dedication to community engagement and entrepreneurship in Africa. Over the years, Dr. Nabatanzi has supervised over 25 undergraduate and 6 graduate students, with a special focus on empowering young researchers in natural sciences. 🌍 Her collaborative efforts have spanned the academic, scientific, and community development sectors, strengthening ties between research institutions and local populations. 🌱

Research Interests 🔬🌱

Dr. Alice Nabatanzi’s research is at the forefront of multidisciplinary fields, combining phytomedicine, nutraceuticals, and environmental sustainability. Her primary research focus includes the investigation of phytobiomolecules for the treatment of human diseases, specifically cancer. 🌿 She is also passionate about exploring the nutraceutical and physicochemical properties of traditional African foods, investigating their role in improving human health. In addition, Dr. Nabatanzi is focused on phytogenics in animal feeds, helping to enhance livestock health. Another core area of her research is finding innovative solutions to water pollution, a critical issue in Uganda and many parts of Africa. 💧 Her interdisciplinary approach and desire to solve real-world problems make her research highly impactful. 🌍

Awards 🏅

Dr. Alice Nabatanzi has been widely recognized for her innovative contributions to science and community development. In February 2023, she won the prestigious Best Innovator Award at the Appropriate Technologies Expo for her development of a sustainable water purification system that provides access to clean water for communities in East Africa. 🏆 She was also named an Early Career Fellow (2023-2025) by the Organization for Women in Science for the Developing World (OWSD), marking her as a rising leader in global scientific research. Additionally, Dr. Nabatanzi was an Early Career Research Leader Fellow of the Carnegie Corporation of New York (2019-2020). These accolades affirm her innovative spirit and her commitment to advancing science for social good. 🌟

Publications 📚

Nutritional, Pharmaceutical, and Antinutritional Properties of Wild Edible Plants

Somatic embryo production and GFP genetic transformation in elite Ugandan cassava genotypes

Ex vivo and in vitro antiplasmodial activity and toxicity of Caesalpinia decapetala (Roth) Alston (Fabaceae)

Medicinal plants used for treatment of malaria by indigenous communities of Tororo District, Eastern Uganda

One-pot removal of pharmaceuticals and toxic heavy metals from water using xerogel-immobilized quartz/banana peels-activated carbon

Kourosh Amini | Materials Characterization Techniques | Best Researcher Award

Prof. Kourosh Amini | Materials Characterization Techniques | Best Researcher Award

Prof. Kourosh Amini, Professor in Psychiatric Nursing, Zanjan university of medical sciences, Iran

Dr. Kourosh Amini is a well-established researcher and professor in the field of nursing at Zanjan University of Medical Sciences. 👨‍⚕️ He has made significant contributions to the understanding of nursing practices, particularly in the areas of mental health, depression, anxiety, self-care education, and addiction recovery. His interdisciplinary approach integrates clinical knowledge with research, making him an influential figure in healthcare. 🌍 With a passion for improving patient care and nursing education, Dr. Amini’s work has earned him an impressive h-index of 18 and 857 citations to date. 📚 His research covers a wide range of topics, from critical care to nursing autonomy, showcasing his expertise in diverse areas of nursing practice. 💡 His dedication to advancing healthcare practices and education has positioned him as a leader in the academic community. As a committed educator, Dr. Amini also mentors the next generation of healthcare professionals, ensuring that his work has a long-lasting impact on the field of nursing and beyond. 🌱

Profile 🧑‍🔬

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Education 🎓

Dr. Kourosh Amini completed his academic training at Zanjan University of Medical Sciences, where he earned his degree in nursing. 📖 This educational journey equipped him with a solid foundation in both clinical nursing and research methodologies. His education focused on understanding the psychosocial factors affecting patients’ well-being, particularly those suffering from chronic conditions like depression, anxiety, and stress. 🧠 In addition to his undergraduate and graduate studies, Dr. Amini continued to advance his expertise in various research topics, which led to his deep involvement in healthcare research. He integrates his educational background with his hands-on experience in clinical practice, allowing him to provide comprehensive care to patients while also addressing broader health issues at the societal level. 🌍 Through his research, he has contributed significantly to the development of evidence-based nursing practices and continues to inspire future generations of healthcare professionals. 🏥 Dr. Amini’s educational background and continuous pursuit of knowledge ensure his work remains at the forefront of nursing research. 🧑‍🏫

Experience 💼

Dr. Kourosh Amini has a wealth of professional experience spanning both academia and clinical practice. 🏥 Throughout his career, he has held various teaching and research positions at Zanjan University of Medical Sciences, where he imparts his knowledge and practical insights to nursing students. As an experienced researcher, Dr. Amini has led multiple studies focused on nursing practices, mental health, addiction, and chronic care management. 🧠 His work has had a direct impact on the improvement of patient care and the well-being of healthcare professionals. 🌱 His collaborations with other experts in nursing and healthcare fields have led to several research publications in top-tier journals. 📚 Notably, his work on nurses’ autonomy, preoperative anxiety, and self-care education has been recognized internationally. 🌍 Dr. Amini’s experience is not only confined to the academic setting but extends to clinical environments, where he has worked directly with patients and healthcare teams to improve care outcomes. His diverse experience makes him a well-rounded academic and a highly respected professional in his field. 💡

Research Interests 🔬

Dr. Kourosh Amini is deeply passionate about exploring the psychosocial aspects of nursing and healthcare. His primary research interests lie in the areas of mental health, nursing autonomy, addiction recovery, and patient education. 🧠 He is particularly interested in how psychological factors such as death anxiety, depression, and stress impact the healthcare process, including patient care and nursing practice. His work also delves into the relationship between nurses’ autonomy and their ability to provide quality care in teaching hospitals. 🏥 Additionally, Dr. Amini is interested in innovative educational programs that enhance nurses’ skills and improve clinical outcomes. 🌱 He has pioneered research on self-care models and their effects on patients undergoing chronic treatments such as hemodialysis. His focus on intervention-based research aims to find practical solutions for improving healthcare quality and patient outcomes. Dr. Amini’s research interests align with the growing need for evidence-based practices in nursing and healthcare. 🌍

Awards 🏆

Dr. Kourosh Amini has received numerous recognitions for his outstanding contributions to nursing research and education. 🌟 His research excellence in the fields of mental health, nursing practice, and patient education has earned him high acclaim in both national and international academic circles. 🏅 He has published widely on topics such as addiction recovery, nurses’ autonomy, and the psychological impact of chronic illness on patients. 🧠 His work on preoperative anxiety and self-care education has led to improvements in nursing practices globally. 🌍 Dr. Amini’s dedication to enhancing healthcare and nursing education has been recognized by numerous academic institutions and healthcare organizations. 🎖️ These accolades not only underscore his scientific achievements but also reflect his commitment to improving healthcare quality and nursing education. His innovative contributions to nursing science continue to inspire new research avenues, benefiting both nurses and patients worldwide. 🌱

Publications 📝

Nurses’ Autonomy Level in Teaching Hospitals and Its Relationship with the Underlying Factors

The Relationship Between Death Anxiety and Quality of Life in Hemodialysis Patients

Survey of Social and Environmental Factors Related to the Relapse of Addiction

Randomized Clinical Trial Comparison of the Effect of Verbal Education and Education Booklet on Preoperative Anxiety

Effect of a Self-care Educational Program Based on Orem’s Model on Stress in Patients Undergoing Hemodialysis

Assist. Prof. Dr Tikaram Neupane | Materials Science | Best Researcher Award

Assist. Prof. Dr Tikaram Neupane | Materials Science | Best Researcher Award

Assist. Prof. Dr. Tikaram Neupane is a physicist specializing in nonlinear optics and nanomaterials, focusing on tungsten and molybdenum disulfide atomic layers. 🔬✨ He holds a Ph.D. in Condensed Matter and Optical Physics and has secured research grants from NASA, DoD, and academic institutions. 💼📚 Dr. Neupane excels in advanced laser techniques, spectroscopy, microscopy, and computational modeling (DFT). 💻🔭 He actively leads scientific fairs, organizes conferences, and serves on editorial boards. 🏆📊 With numerous publications and awards, including a UNESCO fellowship, he combines research excellence with strong community engagement and mentorship. 🌟👨‍🏫

Assist. Prof. Dr Tikaram Neupane, University of North Carolina at Pembroke, United States

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Education 🎓

Dr. Tikaram Neupane earned his Ph.D. in Condensed Matter and Optical Physics from Hampton University (2016–2020), focusing on third-order optical nonlinearity of tungsten and molybdenum disulfide atomic layers. 🎓🔬 Prior to that, he completed an MS in Condensed Matter Physics at the University of Wyoming (2014–2015), deepening his expertise in advanced physics topics. 📚⚛️ He also holds a Postgraduate Diploma in Earth System Physics from the International Center for Theoretical Physics, Trieste, Italy (2010–2011), where he worked on 2D modeling of mantle convection, exploring viscosity effects and multi-scale processes. 🌍🌀

Experience

Dr. Tikaram Neupane completed his Ph.D. at Hampton University (2016–2020), studying nonlinear absorption/refraction, quantum dots, and all-optical switching in nanomaterials. 🔬✨ During his graduate work at the University of Wyoming, he assisted in solar cell efficiency characterization and perovskite optical simulations. ☀️💻 Since 2021, he has been Assistant Professor of Physics at UNC Pembroke, coordinating Applied Physics and recruiting students through regional science fairs. 🎓📚 He was a Postdoctoral Research Associate at the University of Southern Mississippi (2020–2021), focusing on ocean optics, color, and remote sensing with NASA’s Stennis Space Center. 🌊🚀

Grants and Awards 🏅

Assist. Prof. Dr. Tikaram Neupane is an award-winning physicist specializing in nonlinear optics and nanomaterials. 🏅🔬 He secured prestigious research grants including the Dean’s Research Fund (2021), NC Collaboratory HMSI Award (2022), and PURC Center funding (2023–2025). 💼📊 His honors include the Best Presentation Award at ICNST 2019, NASA & DoD-funded research assistantships (2016–2020), and a UNESCO Fellowship at ICTP, Italy (2010–2011). 🌍🎓 Supported early by Tribhuvan University free-ship (2006–2008), he also held a Graduate Assistantship at the University of Wyoming (2014–2015). His work reflects sustained excellence in physics research and innovation. ✨🔭

Book Chapter 📖

Assist. Prof. Dr. Tikaram Neupane is a co-author of the 2024 book chapter in “Advanced Graphene and Graphene Oxide Materials,” published by MDPI. 📖🧑‍🔬 His expertise lies in condensed matter physics and nonlinear optics of nanomaterials like tungsten and molybdenum disulfide. ⚛️✨ Dr. Neupane combines advanced laser techniques, spectroscopy, and computational modeling to explore cutting-edge material properties. 💡🔬 His scholarly contributions extend beyond research articles to impactful academic publishing, reflecting his leadership in nanomaterials science. 🌍📚 He is dedicated to advancing knowledge in 2D materials and their innovative applications. 🚀🔗

Technical Skills 🖥️

Expert in advanced laser systems including pico- and nano-second lasers (Shunami, Spectra-Physics, Continuum) and CW lasers (Diode, Ar, He-Ne, He-Cd). ⚡🔆 Skilled in nonlinear optics techniques like Z-scan, I-scan, spatial self-phase modulation, and four-wave mixing. 🌀✨ Proficient in Density Functional Theory (DFT) for electronic and optical property calculations of nanomaterials. 💻📊 Experienced in spectroscopy (Raman, UV-Vis, photoluminescence) and microscopy (optical, XRD, AFM, TEM). 🔍📈 Adept with data acquisition tools and optics instrumentation. Software skills include MATLAB, Origin, VASP, and Quantum Espresso. 💾🖥️

Research Focus 🔍

Dr. Tikaram Neupane’s research focuses on nonlinear optical properties of 2D nanomaterials such as graphene oxide, CdSe quantum dots, and hexagonal boron nitride. 📈🧪 His work explores third-order nonlinearity, self-phase modulation, and spin-resolved optical behavior using cutting-edge techniques like Z-scan and DFT simulations. 🔍💡 He investigates quantum optical effects for photonics and optoelectronics, pushing frontiers in nanophotonics, quantum materials, and ultrafast spectroscopy. ⚛️📡 Dr. Neupane’s contributions offer critical insights into the development of next-gen devices for optical communication, sensing, and quantum information technologies. 🚀📱🌐

Publications 📚

Size-dependent fluorescence properties of CdSe quantum dots
👥 Authors: Uma Poudyal, Chandra Mani Adhikari, Nisha H. Makani, Bhoj Raj Gautam, Tikaram Neupane
📘 Journal: Solid State Communications (2025)

Third-Order Optical Nonlinearity of Hexagonal Boron Nitride Atomic Layer
👥 Authors: Tikaram Neupane, Uma Poudyal, Bagher Tabibi, Felix Jaetae Seo
📘 Preprint: Preprints.org (2024)

Cubic Nonlinearity of Graphene-Oxide Monolayer
👥 Authors: Tikaram Neupane, Uma Poudyal, Bagher Tabibi, Wan-Joong Kim, Felix Jaetae Seo
📘 Journal: Materials (2023)

Dispersion in Single-Wall Carbon Nanotube Film: An Application of Bogoliubov–Valatin Transformation for Hamiltonian Diagonalization
👥 Authors: Chandra M. Adhikari, Da’Shawn M. Morris, Thomas W. Noonan, Tikaram Neupane, Basu R. Lamichhane, Bhoj R. Gautam
📘 Journal: Condensed Matter (2023)

Spatial Self-Phase Modulation in Graphene-Oxide Monolayer
👥 Authors: Tikaram Neupane, Bagher Tabibi, Wan-Joong Kim, Felix Jaetae Seo
📘 Journal: Crystals (2023)

Spin-Resolved Visible Optical Spectra and Electronic Characteristics of Defect-Mediated Hexagonal Boron Nitride Monolayer
👥 Authors: Sheng Yu, Tikaram Neupane, Bagher Tabibi, Qiliang Li, Felix Seo
📘 Journal: Crystals (2022)

Assoc. Prof. Dr Saida Asadullayeva | Optical Materials | Women Researcher Award

Assoc. Prof. Dr Saida Asadullayeva | Optical Materials | Women Researcher Award

Assoc. Prof. Dr. Saida Asadullayeva is a dedicated physicist with over 20 years of experience in research and academia. She specializes in optical and electronic properties of novel materials, including nanomaterials and defect chalcopyrites, with applications in photoluminescence and energy technologies ⚛️🔬. With 25+ publications in top international journals and strong interdisciplinary skills in experimental and computational methods 💻, she actively leads international collaborations and grant projects 🌍🤝. Fluent in multiple languages and proficient in data analysis tools, Dr. Asadullayeva exemplifies innovation and leadership, making her a standout candidate for the Women Researcher Award. 🏆👩‍🔬

Assoc. Prof. Dr Saida Asadullayeva, Institute of Physics of Ministry of Science and Education of Azerbaijan, Azerbaijan

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Education 🎓

Assoc. Prof. Dr. Saida Asadullayeva earned her degree in Physics with a specialization as a Physics teacher from Baku State University, where she studied from 1991 to 1996 🎓⚛️. Her solid educational foundation in physics has been the cornerstone of her extensive career in research and academia. This background equipped her with both deep theoretical knowledge and practical teaching skills, enabling her to contribute effectively to scientific research and education 🌟📚. Her education laid the groundwork for her pioneering work in material physics and her continued success in international scientific collaborations. 🌍🔬

Experience 👩‍🏫

Assoc. Prof. Dr. Saida Asadullayeva has a rich and diverse work experience spanning over two decades. She began her career as a dedicated teacher at Masalli Secondary School No. 1 (1997–2005) 📚👩‍🏫. Since 2005, she has been a Senior Researcher at the Institute of Physics of the Ministry of Science and Education, contributing to advanced scientific studies 🔬⚛️. In 2022, she took on an academic role as a Lecturer at Azerbaijan State Oil and Industry University, sharing her expertise with the next generation of scientists 🎓🏫. Her career reflects a strong commitment to education, research, and mentorship.

Projects

Assoc. Prof. Dr. Saida Asadullayeva is an experienced research project leader with a strong track record in managing and executing national and international grants 🎓📊. She has played key executive roles in competitive grant projects funded by the Science Development Foundation under the President of Azerbaijan 🇦🇿, collaborated with the Belarusian Academy of Sciences 🇧🇾, and supported young researchers at the Joint Institute for Nuclear Research in Dubna, Russia 🇷🇺. Additionally, she has been actively involved in multiple scientific programs of the Azerbaijan National Academy of Sciences (ANAS) from 2018 to 2023 📅🔬, demonstrating sustained leadership and commitment to advancing scientific research.

Research Focus 🔬

Assoc. Prof. Dr. Saida Asadullayeva focuses on the optical and electronic properties of advanced materials such as defect chalcopyrites, single crystals like ZnGa₂Se₄, and nanomaterials 🔬✨. Her research integrates experimental techniques and computational modeling (ab initio, DFT) to study luminescence, photoluminescence, and spectroscopic ellipsometry of materials used in energy and optoelectronic applications ⚛️💡. She investigates the effects of impurities, rare earth ions, and intercalation on material behavior to enhance performance in devices like hydrogen fuel cells and photonic systems 🌿🔋. Her interdisciplinary approach bridges physics, materials science, and nanotechnology, advancing next-gen functional materials. 💻📊

Publications 📖

Ab initio and experimental investigations of the electronic and optical properties of pure and p-Aminopyridine-intercalated In1.2Ga0.8S3
Authors: Z. A. Jahangirli, S. G. Asadullayeva, I. R. Amiraslanov, Q. Y. Eyyubov, A. B. Rahimli, A. S. Abiyev
Journal: Indian Journal of Physics (2025-05) 🔬📖

Effect of rare earth ions on the optical and electronic properties of defect chalcopyrite: Experimental and theoretical investigation
Authors: S. G. Asadullayeva, N. A. Ismayilova
Journal: Solid State Communications (2024-12) ⚛️📝

Computational and experimental approach for investigation of optical properties of single-crystal MnGa2Se4
Authors: N. A. Ismayilova, S. G. Asadullayeva, M. A. Musayev, D. J. Askerov
Journal: Canadian Journal of Physics (2024-05) 🌐🔍

Optical and electronic properties of defect chalcopyrite ZnGa2S4
Authors: S. G. Asadullayeva, N. A. Ismayilova, M. A. Musayev, I. I. Abbasov
Journal: International Journal of Modern Physics B (2024-01) 💡📊

Analytic method for determining the coercive force of ferromagnetic materials
Authors: S. G. Asadullayeva, N. A. Ismayilova, A. N. Jafarova, L. K. Abdullayeva
Journal: Advanced Physical Research (2023) 🧲⚙️