Manish Naagar | Nanoadditives | Research Excellence Award

Research Excellence Award

Manish Naagar
Affiliation Dev Bhoomi Uttarakhand University
Country India
Scopus ID 57211406093
Documents 29
Citations 839
h-index 12
Subject Area Nanoadditives
Event International Material Scientist Awards
ORCID 0009-0004-5690-5738

Manish Naagar is a researcher affiliated with Dev Bhoomi Uttarakhand University whose scholarly work includes nanomaterials, magnetic ferrites, nanocatalysts, environmental remediation, and related engineering applications. His research profile includes publications addressing the synthesis, characterization, and application of advanced nanoscale materials. Publicly available institutional and scholarly sources identify his association with Dev Bhoomi Uttarakhand University and document research contributions involving magnetic nanomaterials and nanocatalysts.[1]

Abstract

The Research Excellence Award recognizes sustained scholarly activity and research contributions within the materials science domain. Manish Naagar’s research profile is associated with advanced nanomaterials, magnetic ferrites, nanocatalysts, and engineering applications.[1]

Keywords

Dev Bhoomi Uttarakhand University; Nanoadditives; Nanomaterials; Magnetic Ferrites; Nanocatalysts; Materials Science; Nanotechnology; Environmental Remediation; Ferrite Nanoparticles; Research Excellence Award; International Material Scientist Awards.[2]

Introduction

Manish Naagar’s documented research activities are connected with this interdisciplinary landscape. Scholarly profiles describe expertise involving the synthesis and application of multifunctional magnetic nanoferrites and nanocatalysts, including research directed toward environmental remediation and sustainable water purification.[1]

Research Profile

Independent scholarly information also associates Naagar with research in rocket propulsion, alternate fuels, fluid mechanics, computational fluid dynamics, aerodynamics, and numerical simulation, while his more recent materials-oriented profile emphasizes magnetic nanoferrites and nanocatalysts.[4]

Research Contributions

Naagar’s research contributions span interconnected areas of materials science, including magnetic nanomaterials, ferrite nanoparticle synthesis, nanocatalysts, environmental remediation, and water purification. His work also examines  in ferrite systems, including crystallinity, spinel structures, magnetic behavior, and processing effects.[3]  

Publications

The publications demonstrate applications of ferrite and nanostructured materials in areas ranging from catalytic ignition systems to electromagnetic and high-frequency material technologies. The 2026 study additionally reports a green combustion approach and systematic characterization of Mg-substituted Zn–Cu ferrite nanoparticles.[4]

Research Impact

The documented publications provide additional evidence of research engagement with functional nanomaterials. In particular, work on magnetic ferrites connects nanoscale material design with catalytic, magnetic, dielectric, electromagnetic, and environmental applications.[2]

Award Suitability

The award suitability assessment should nevertheless be understood as a scholarly profile-based assessment. A final award decision may appropriately consider the complete publication record, independent verification of bibliometric indicators, originality of contributions and the evaluation criteria established by the awarding organization.[3]  

Conclusion

His publication record demonstrates research spanning material synthesis, characterization, structure–property relationships, catalytic applications. Collectively, these contributions provide a coherent basis for recognizing his research activities within the scope of the International Material Scientist Awards.[4]

References

  1. Elsevier. (n.d.). Scopus author details: Manish Naagar, Author ID 57211406093. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=57211406093
  2. ORCID. (n.d.). ORCID record for Manish Naagar, ORCID iD 0009-0004-5690-5738. ORCID.
    https://orcid.org/0009-0004-5690-5738
  3. Naagar, M., Wan, F. (2026). Transformative role of Pr³⁺ in ferrite nanomaterials: A review on magnetic tuning and structural optimization for advanced technologies. Journal of Rare Earths, 44(4), 969–987.
    https://doi.org/10.1016/j.jre.2025.06.006
  4. International Material Scientist Awards. (n.d.).
    https://materialscientists.com