Ramakanth Illa | Smart Materials | Best Faculty Award

Assoc. Prof. Dr. Ramakanth Illa | Smart Materials | Best Faculty Award

VIT-AP University | India

Dr. Illa Ramakanth is a Senior Associate Professor and Head of the Department of Chemistry, School of Advanced Sciences, VIT-AP University, Amaravati. He earned his Ph.D. in Physical Chemistry from IIT Madras and has over two decades of experience spanning teaching, research, academic leadership, and international collaboration. He has served in key administrative roles including Dean/Associate Dean (Academics), HoD, Program Chair, and Erasmus+ Coordinator, contributing significantly to curriculum development, quality assurance, and global academic partnerships. Dr. Ramakanth has held research and visiting faculty positions at leading international institutions in Europe, Africa, Australia, and North America, and has been instrumental in establishing MoUs with universities such as the University of Pretoria and Slovak University of Agriculture. His research interests include functional soft materials, self-healing hydrogels, electrochemical sensors, nanomaterials, organic–inorganic hybrid thin films, and green nanotechnology for sustainable applications. He has received multiple research awards from VIT-AP University, international fellowships including Erasmus+, and recognition from the Royal Society of Chemistry. He serves on editorial boards of reputed journals and actively reviews for high-impact publications. With an h-index of 4, 4 research documents, and 25 citations, Dr. Ramakanth continues to advance interdisciplinary chemical research while mentoring students and fostering global academic engagement.

Citation Metrics (Scopus)

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4
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Citations
25

Documents
4

h-index
4

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Rajkumar Manickam | Smart Materials | Young Scientist Award

Assist. Prof. Dr. Rajkumar Manickam | Smart Materials | Young Scientist Award

Karpagam Academy of Higher Education | India

Dr. Manickam Rajkumar is an accomplished researcher and Assistant Professor in the Department of Biotechnology at Karpagam Academy of Higher Education, Coimbatore, with a Ph.D. focusing on biopolymer-based hydrogels as therapeutic targets for neurodegenerative diseases, where he synthesized and characterized nanocomposite biomaterials and evaluated their biomedical efficacy through in vitro, in vivo, and in silico studies. His interdisciplinary research integrates nanotechnology, molecular biology, and biomedical applications, emphasizing antioxidant, antibacterial, anticancer, antidiabetic, anti-inflammatory, anticholinesterase, and wound-healing activities of green-synthesized nanomaterials. Dr. Rajkumar has co-authored numerous publications in high-impact peer-reviewed journals and contributed book chapters in leading academic volumes; his research has been widely cited, with his Google Scholar profile showing hundreds of citations and an h-index reflecting his impact in the field. He also holds a granted patent on nano-polymer fused magnesium hydroxide tethered with rosmarinic acid for Alzheimer’s therapy and serves. His work has been recognized with multiple best presentation awards at national and international conferences, and he continues to pursue innovative research at the interface of nanobiotechnology and therapeutics.

 

Citation Metrics (Scopus)

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Citations 337

Documents 30

h-index 12

 

 

Citations

Documents

 

h-index

 

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Muhammad Tayyab Bhutta | Powder Metallurgy | Editorial Board Member

Mr. Muhammad Tayyab Bhutta | Powder Metallurgy | Editorial Board Member

National University of Science & Technology,Islamabad | Pakistan

Muhammad Tayyab Bhutta is a mechanical engineer and researcher associated with the National University of Sciences and Technology (NUST), Islamabad, Pakistan, specializing in materials engineering, mechanical design, and manufacturing processes. His postgraduate research focused on the development and characterization of alumina-hydroxyapatite composites for biomedical applications using powder metallurgy, involving material selection, sintering, and microstructural characterization through XRD, SEM, and EDX analysis. He has worked on multiple research projects emphasizing bioceramic and metallic composites, mechanical testing, and process parameter optimization. Professionally, he has gained valuable experience in mechanical maintenance, design, and manufacturing engineering, contributing to projects in mechanical system design, plant maintenance, and industrial process improvement. His expertise includes CAD modeling, FEA simulation, process optimization, and reliability-based maintenance strategies. With several publications and technical contributions, his research impact is reflected through an h-index of 1 and  He holds certifications in Primavera Project Delay Analysis, and Reliability Centered Maintenance, supporting his multidisciplinary approach. Recognized for academic excellence and leadership in engineering, his goal is to advance innovation in sustainable mechanical design, advanced materials, and biomedical engineering applications that bridge research with real-world industrial challenges.

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Featured Publications

Bhutta, M. T., & Ali, S. (2023). Development and characterization of Alumina–Hydroxyapatite composites for biomedical implant applications using powder metallurgy. Journal of Materials Processing and Technology, 315, 118–127.

Bhutta, M. T., Mubashar, A., & Ahmed, F. (2022). Effect of sintering temperature on the mechanical and microstructural properties of Alumina–Hydroxyapatite bioceramics. Materials Science and Engineering: A, 850, 143–153.

Bhutta, M. T., & Khan, R. A. (2023). Optimization of process parameters in powder metallurgy for composite fabrication using Design Expert software. International Journal of Advanced Manufacturing Technology, 126(7), 2145–2156.

Bhutta, M. T., & Yousaf, M. (2024). Evaluation of mechanical and tribological behavior of Al₂O₃–HAP composites under variable dwell times. Journal of Mechanical and Industrial Engineering Research, 22(4), 310–320.

Bhutta, M. T., & Rehman, U. (2024). Microstructural evolution and density analysis of Alumina-based composites for biomedical applications. International Journal of Materials and Metallurgical Engineering, 39(2), 201–210.