Marija Milijic | Electrical Properties of Materials | Best Researcher Award

Dr. Marija Milijic | Electrical Properties of Materials | Best Researcher Award

Dr. Marija Milijic | University of Nis | Serbia

Dr. Marija Milijić is a dedicated researcher and academic in the field of telecommunications, specializing in antenna modeling and microwave systems. She has built her career at the Faculty of Electronic Engineering, University of Niš, Serbia, where she has contributed extensively through teaching, research, and conference leadership. Her expertise lies in bridging theoretical approaches with practical applications, particularly in developing printed antenna structures and advancing techniques in biosensing and wireless communication. Over the years, she has played an active role in international scientific communities through membership in IEEE societies, organizing major conferences, and contributing to collaborative projects with distinguished global researchers. Her career path reflects a strong balance of scientific rigor, innovative thinking, and dedication to academic mentorship, ensuring the growth of future engineers and scientists in the field of microwave theory, antennas, and telecommunications systems.

Profiles

SCOPUS

ORCID

Education

Dr. Marija Milijić completed her higher education at the Faculty of Electronic Engineering, University of Niš, Serbia, where she pursued undergraduate, postgraduate, and doctoral studies in telecommunications. Her undergraduate studies equipped her with a strong foundation in electrical engineering, fostering an early interest in applied electromagnetics and communication technologies. She continued with postgraduate research on the modeling of electromagnetic propagation and microstrip patch antennas in wireless communication systems using artificial neural networks, marking her early exploration into intelligent computational methods in engineering. Her doctoral research advanced these interests significantly, focusing on modeling integrated printed antenna structures and three-dimensional reflectors with optimized side lobe suppression, a topic of great significance for modern communication and radar systems. Her educational path demonstrates a consistent progression from fundamental engineering to advanced interdisciplinary integration of antennas, neural networks, and applied telecommunications, establishing her as a well-rounded expert with solid academic and research credentials.

Experience

Dr. Milijić has steadily advanced through academic and research positions at the Faculty of Electronic Engineering, University of Niš, Serbia, where she began her career as a research assistant supported by a scholarship from the Ministry of Science and Technological Development. She then contributed as a research associate, expanding her technical knowledge and building collaborative ties in the field of antennas and microwaves. Her academic contributions were further enriched when she took on teaching roles, first as a teaching assistant and later as a teaching assistant with a doctoral degree, guiding students in both theoretical learning and practical applications of telecommunications. Beyond her teaching responsibilities, she has served in organizing committees of major international conferences, such as TELSIKS and ICEST, actively supporting knowledge exchange in the global scientific community. Her professional trajectory reflects a seamless blend of teaching, research, and organizational leadership that has significantly strengthened the academic and research ecosystem at her institution.

Research Interest

Her research interests focus on advancing antenna design, microwave modeling, and the application of artificial intelligence in telecommunications. She has devoted considerable effort to the modeling of printed antenna structures, integrated with three-dimensional reflectors for applications requiring high side lobe suppression and shaped radiation patterns. Another key area of her work involves the application of artificial neural networks to complex problems in microwaves, with particular contributions to the modeling and optimization of printed antennas and RF MEMS devices. Recently, her interests have extended to biosensing applications, where novel antenna designs can significantly enhance non-invasive biomedical monitoring. This interdisciplinary integration of telecommunications, artificial intelligence, and biomedical engineering highlights the innovative nature of her contributions. Through her research, she addresses both fundamental scientific questions and practical engineering challenges, advancing knowledge in antenna theory while enabling technologies with broad applications in wireless communication, healthcare, and energy-efficient systems for modern society.

Publication Top Notes

Polarimetric Assessment Methodology for Doppler Radar Respiratory Measurements

Authors: Jon H. Itokazu, Marija Milijić, Branka Jokanović, Olga Boric-Lubecke, Victor M. Lubecke
Journal: IEEE Transactions on Microwave Theory and Techniques

Dual-Port Butterfly Slot Antenna for Biosensing Applications

Authors: Marija Milijic, Branka Jokanovic, Miodrag Tasic, Sinisa Jovanovic, Olga Boric-Lubecke, Victor Lubecke
Journal: Sensors

Analysis of Feeding Methods for High-Gain Crossed Slot Antenna Arrays

Authors: Marija Milijic, Branka Jokanovic
Journal: 9th IcETRAN Conference

Advanced High-Gain Slot Antenna Arrays for 5G and Radar Applications

Authors: Marija Milijić, Branka Jokanović
Journal: Telfor Journal

Printed Antenna Array with Flat-Top Radiation Pattern

Authors: Marija R. Milijić, Aleksandar D. Nešić, Bratislav D. Milovanović, Dušan A. Nešić
Journal: Frequenz

Conclusion

Dr. Marija Milijić represents the profile of a researcher whose career blends academic excellence, scientific innovation, and professional leadership. Her body of work highlights critical advances in antenna design, microwave modeling, and neural network applications, all of which contribute directly to the evolution of telecommunications and related fields. Beyond her personal research achievements, she has also demonstrated consistent service to her community through her teaching role, mentorship, and active participation in professional organizations and conferences. Her commitment to promoting women in engineering and supporting young researchers underlines the broader social and academic value of her contributions. With her interdisciplinary research, impactful publications, and leadership in professional communities, she stands out as a scientist of high merit. Recognizing her through this award would not only honor her individual achievements but also encourage further innovation and inclusivity in the fields of engineering and telecommunications.

Dr Arun Nimmala | Electrical Properties of Materials | Best Researcher Award

Dr Arun Nimmala | Electrical Properties of Materials | Best Researcher Award

Dr Arun Nimmala, Indian Institute of Technology Delhi, India

Dr. Arun Nimmala is an expert in micro/nano fabrication, nano-electronics, and semiconductor devices, specializing in memory devices based on Transition Metal Oxides (TMO) like HfO2 and 2D materials such as MoS2. His doctoral research focused on the effects of gamma and ion irradiation on RRAM devices. With postdoctoral experience at IIT Delhi and a research associate role at the University of Hyderabad, he has contributed significantly to the field of nanoelectronics. Dr. Nimmala has received multiple awards, including Best Poster Awards and UGC-JRF/SRF. He excels in cleanroom management, training, and leading research teams. 🧑‍🔬💻🔬🎓

Publication Profile

SCOPUS

ORCID

GOOGLE SCHOLAR

Academic Background🎓

Dr. Arun Nimmala has an impressive academic background. 🎓 He earned his Ph.D. in Electronics Science and Engineering from CASEST, University of Hyderabad, in 2021. 🏅 Prior to that, he completed his M.Tech in Integrated Circuit Technology from the same institution, securing an 8.08 CGPA in 2014. 💻 His B.Tech in Electronics and Communication Engineering from JNTU-Hyderabad was awarded with a 72.13% in 2010. 📡 Dr. Nimmala also completed his XII (Intermediate) at Jawahar Navodaya Vidyalaya (CBSE) with 73.16% in 2006 and his X (SSC) from the same school with 80.8% in 2004. 🎓📚

Professional Experience and Contributions 💼

Dr. Arun Nimmala has held key positions in prestigious institutions throughout his career. 🌟 He is currently serving as an Institute Post-Doctoral Fellow (IPDF) at the Indian Institute of Technology Delhi (IITD) since March 2023. 🏢 Prior to this, he worked as a Research Associate at the University of Hyderabad from July 2020 to March 2023, contributing to cutting-edge research. 🔬 Dr. Nimmala also gained valuable teaching experience as a Teaching Assistant at the University of Hyderabad from January 2015 to April 2020, where he supported academic programs and mentored students. 📚🎓

Technical Skills and Expertise

Dr. Arun Nimmala has over 9 years of expertise in micro/nano fabrication and characterization. 🔬 He has extensive experience working in ISO 5 and ISO 6 clean rooms at prestigious institutions like Nanoscale Research Facility (IIT Delhi) and the Centre for Nanotechnology (University of Hyderabad). 🏢 His skills include using advanced fabrication tools such as photolithography (EBL and mask aligner), physical vapor deposition, dry etching, chemical vapor deposition, and more. 🛠️ In material and electrical characterization, Dr. Nimmala has worked with tools like the Agilent B 1500, Raman spectroscopy, AFM, FESEM, XRD/XRR, and TEM for precise analysis. 🧪

Academic projects💻

Dr. Arun Nimmala has worked on notable academic projects during his M.Tech and B.Tech studies. 🎓 For his M.Tech project, he focused on the Synthesis, Characterization, and Radiation Damage Studies of High-k Dielectric (HfO2) Films for MOS device applications, contributing to advancements in semiconductor technology. 💻 His B.Tech project involved Implementing ZigBee-based Wireless Data Communication, where he explored innovative solutions for efficient communication in wireless sensor networks. 📡 These projects reflect his deep expertise in materials science, semiconductor devices, and wireless communication systems. 🔧

Research Focus Area 🌱🧬

His work involves the fabrication and characterization of advanced semiconductor devices, such as memory devices based on Transition Metal Oxides (TMO’s) like HfO2 and 2D materials like MoS2 for Resistive Random Access Memory (RRAM) applications. 💡 He has expertise in electron beam and photolithography techniques, as well as testing and reliability analysis of these devices. 📊 Additionally, Dr. Nimmala works on thin film preparation, ion beam studies, and room-temperature electrical characterization of oxide and 2D material-based RRAM devices, contributing to the field of nanoelectronics and device engineering. 💻

Publication Top Notes📄✨

Refining shape and size of silver nanoparticles using ion irradiation for enhanced and homogeneous SERS activity

Fabrication and Parametric Degradation Analysis on the Silicon Heterojunction Solar Cell under 60Co Gamma Irradiation

Resistive switching properties of hafnium oxide thin-films sputtered at different oxygen partial pressures

Dual metal ion (Fe3+ and As3+) sensing and cell bioimaging using fluorescent carbon quantum dots synthesised from Cynodon dactylon

Thermal and light-induced electrical properties in nanocomposites of reduced graphene oxide and silver nanoparticles

Effects of Bottom Electrode Materials on the Resistive Switching Characteristics of HfO2-Based RRAM Devices

Formation of Cu-Ni enriched phases during laser processing of non-equiatomic AlSiCrMnFeNiCu high entropy alloy nanoparticles