Priyabrata Pattanaik | Energy | Best Researcher Award

Prof. Dr. Priyabrata Pattanaik | Energy | Best Researcher Award

Siksha O Anusandhan University | India

Prof.Dr. Priyabrata Pattanaik is a Professor of Electronics and Communication Engineering and an active research leader contributing significantly in semiconductor sensors and IoT-enabled device innovation. He has supervised doctoral, postgraduate, and undergraduate research while holding key academic and research administrative roles including Additional Dean (Research) and Director of research and innovation initiatives. His academic identity reflects strong research impact with more than 100 indexed publications (Scopus: Documents 99, Citations 238, h-index 8; Web of Science: Documents 38, Citations 83, h-index 5; Google Scholar: Documents 85, Citations 279, h-index 9) and a portfolio of 33 patents, including several granted. His research interests span semiconductor material-based biosensors, industrial sensors, piezoelectric energy harvesting systems, SAW sensors, MEMS devices, and IoT-assisted health and environmental monitoring prototypes. He has engaged in multiple international and national research collaborations, advancing sensor materials like ZnO and Sr-HT-Willemite for biomedical, textile, and agricultural applications. With a strong background in VLSI design, semiconductor device simulation, and interdisciplinary prototype development, he combines academic depth with practical innovation. His professional journey includes extensive teaching experience, research lab leadership, conference organization, and reviewer and editorial responsibilities. He continues to contribute to emerging smart sensing technologies for societal and industry advancement.

Profile: Orcid

Featured Publications

Mohanty, T., Pattanaik, P., Dash, S., Tripathy, H. P., & Holderbaum, W. (2025). Smart robotic system guided with YOLOv5 based machine learning framework for efficient herbicide usage in rice (Oryza sativa L.) under precision agriculture. Computers and Electronics in Agriculture, (Article 110032). https://doi.org/10.1016/j.compag.2025.110032

Mohanty, T., Dash, S., Pattanaik, P., Tripathy, H. P., Gulati, J. M. L., Mishra, D. K., & Holderbaum, W. (2025). Utilization of biomass ash generated from combined heat and power generation system as a multi-nutrient source for crops. International Journal of Thermofluids, (Article 101037). https://doi.org/10.1016/j.ijft.2024.101037

Subudhi, D. K., Biswal, B., Jena, S., Pattanaik, P., & Mishra, D. K. (2024). Role of site-specific Ho substitution on the structural, morphological, electrical and dielectric properties of BiFeO₃. Phase Transitions. https://doi.org/10.1080/01411594.2024.2393404

Panda, S. S., Tripathy, H. P., Satapathy, L. M., Pattanaik, P., Kamilla, S. K., Mishra, D. K., & Mahapatra, P. K. (2024). Synthesis and characterization of zinc oxide reinforced fly ash piezoelectric floor tiles for automated sanitization system application. Journal of Materials Science: Materials in Electronics. https://doi.org/10.1007/s10854-024-12762-7

Anil Kumar Undrajavarapu | Energy | Best Researcher Award

Mr. Anil Kumar Undrajavarapu | Energy | Best Researcher Award

CSIR-Central Electro Chemical Research Institute | India

Hundasa Chala Nagari is an emerging academic and research professional who has established himself as a dedicated scholar with strong foundations in science and engineering, consistently working toward advancing knowledge in his chosen field. He pursued his higher education with a clear vision of combining theory and practical applications, earning degrees that have equipped him with the expertise to contribute to both academia and research-driven innovation. His academic journey reflects his commitment to excellence and his passion for exploring new frontiers of science, technology, and interdisciplinary studies. Professionally, Hundasa has accumulated valuable experience in teaching, research, and collaborative projects, which has allowed him to gain insights into problem-solving, mentoring, and the design of innovative methodologies to address critical challenges. His teaching and research experiences are complemented by his involvement in projects that bridge the gap between academic learning and practical application, enabling him to contribute both to the classroom and the wider research community. His primary research interests lie in areas related to sustainable development, scientific innovation, and advanced technological solutions that benefit society. He is particularly keen on applying theoretical knowledge to real-world problems, especially those related to energy, environment, materials, and technology-enabled growth, aiming to create outcomes that foster societal progress and sustainable practices. His research skills include strong analytical thinking, advanced problem-solving, data analysis, scientific writing, experimental design, and collaborative teamwork, with proficiency in using both traditional and modern tools for research and innovation. He has also developed communication skills that help him convey complex ideas clearly in academic forums, seminars, and publications. Over time, Hundasa has been recognized with awards and honors that highlight his dedication, achievements, and contributions to the academic and scientific community. These accolades not only serve as a testament to his hard work but also encourage him to continue pushing the boundaries of innovation. His participation in conferences, workshops, and research networks further enriches his professional profile and strengthens his position as a researcher committed to advancing global knowledge. In conclusion, Hundasa Chala Nagari exemplifies the qualities of a motivated researcher and academic professional who integrates education, experience, and innovation to make meaningful contributions to science and society. His journey reflects a balance of scholarly rigor, professional dedication, and a forward-looking vision to develop solutions for global challenges. By continuing to leverage his skills, research interests, and collaborative spirit, he aspires to advance in his career, contribute to transformative research, and inspire others through his academic and professional achievements.

Profiles : Google Scholar | Scopus | Orcid

Featured Publications

“Co–Co3O4 nanostructure with nitrogen-doped carbon as bifunctional catalyst for oxygen electrocatalysis”

“Acidic and Alkaline pH Controlled Oxygen Reduction Reaction Pathway over Co‐N4C Catalyst”

“A novel nonheme manganese (ii) complex for (electro) catalytic oxidation of water”

“Hydroxide Ion Conduction through Viologen-Based Covalent Organic Frameworks (vCOFs): An Approach toward the Advancement”

“Assessing the impact of an antisolvent-regulated ZnCl2 water-in-salt electrolyte on solvation structure: a multiscale computational validation for aqueous Zn-ion battery”

Saravanakumar Tamilarasan | Electrochemistry | Best Researcher Award

Dr. Saravanakumar Tamilarasan | Electrochemistry | Best Researcher Award

IIT BOMBAY, INDIA

Author Profile

SCOPUS

GOOGLE SCHOLAR

🎓 EARLY ACADEMIC PURSUITS

Dr. T. Saravanakumar’s academic journey commenced with a strong foundation in Mechanical Engineering from Dr. Nallini Institute of Engineering and Technology, affiliated with Anna University, followed by a M.Tech and Ph.D. in Nanoscience and Technology from Anna University Regional Campus, Coimbatore. His academic rigor laid the groundwork for his multidisciplinary approach to material science, nanotechnology, and electrochemistry.

🏢 PROFESSIONAL ENDEAVORS

Beginning his research career as a Junior Research Fellow (2016–2018) on a DST-SERB-funded project involving Hybrid Reduced Graphene Oxide Supported Bimetallic Porous Nanostructures, Dr. Saravanakumar contributed significantly to nanoscale material development. In March 2024, he began his Post-Doctoral Fellowship at the Department of Energy Science and Engineering, IIT Bombay, where he continues advancing innovations in smart materials and energy devices.

📚 CONTRIBUTIONS AND RESEARCH FOCUS IN ELECTROCHEMISTRY

Dr. Saravanakumar’s research revolves around advanced material synthesis, electrocatalysis, photocatalysis, and crystal engineering of sulfides and oxides. His work emphasizes:

  • Bifunctional electrocatalysts for overall water splitting

  • Photocatalytic degradation using visible-light-responsive nanomaterials

  • Energy devices such as supercapacitors, dye-sensitized solar cells, and hydrogen evolution reaction catalysts

  • Electro/photo catalysts and inverse spinels for next-gen energy solutions

His research outputs demonstrate innovations in designing 2D/2D nanostructures, heterostructures, and layered double hydroxides—crucial for improving catalytic efficiency and environmental applications.

🌍 IMPACT AND INFLUENCE

With over 211 citations, an h-index of 9, and i10-index of 9, Dr. Saravanakumar’s contributions have had measurable impact in the domains of materials chemistry and electrochemical engineering. His work is frequently cited in contexts ranging from nanotechnology applications in renewable energy to environmental engineering solutions.

He has collaborated on publications with eminent researchers from institutions across India, advancing multidisciplinary research that bridges material science with sustainability.

🧭 LEGACY AND FUTURE CONTRIBUTIONS

Dr. Saravanakumar is poised to become a leading figure in electrocatalytic materials and environmental nanotechnology. His contributions to hydrogen generation, green energy materials, and nanostructured catalysts promise a legacy of sustainable solutions in clean energy conversion and wastewater remediation.

His long-term vision includes:

  • Development of cost-effective, scalable nano-devices

  • Advanced synthesis techniques for biocompatible and smart materials

  • Integrating material innovation with circular economy models

 ✅CONCLUSION

Dr. T. Saravanakumar exemplifies the emerging class of materials scientists focused on bridging nanotechnology, energy science, and environmental engineering. With a research portfolio spanning electrochemistry, nanostructured catalysts, and photocatalytic devices, his journey reflects dedication to scientific excellence, societal impact, and technological advancement.

His interdisciplinary approach, global collaborations, and consistent research outputs make him a promising innovator and future leader in the field of sustainable materials and energy technologies.

🔬NOTABLE PUBLICATION:

Unraveling the Enhanced Electrochemical Performances of Nickel Aluminum Sulfide Lattices for Overall Water Splitting and as Counter Electrode Materials for Dye-Sensitized Solar Cells

Authors: Saravanakumar Tamilarasan, Sathiya Bama Sundararaj, K. B. Bhojanaa, A. Pandikumar, S. J. Sardhar Basha, Selvaraju Thangavelu
Journal: The Journal of Physical Chemistry C
Year: 2023


Electrocatalyst for Oxygen Evolution Reaction and Methanol Oxidation Using Surface-Oriented Stable NiSnO₃ Nanospheres Anchored g-C₃N₄ Nanosheets

Authors: Sathiya Bama Sundararaj, Saravanakumar Tamilarasan, K. Kadirvelu, Selvaraju Thangavelu
Journal: Applied Surface Science
Year: 2023


Heterostructured Crystalline and Non-Crystalline Carbon Coatings – A Sustainable Solution for Corrosion Inhibition in Reinforced Concrete

Authors: M. Ananthkumar, K. M. Mini, Saravanakumar Tamilarasan, M. Rangarajan
Journal: Carbon Trends
Year: 2025


Revealing the Role of Brønsted Basicity by the Electrocatalytic Reaction via Li Insertion in the MgFe₂O₄ Lattice

Authors: Saravanakumar Tamilarasan, S. J. Sardhar Basha, Sathiya Bama Sundararaj, Humayun Amir, Viswanathan Chinnusamy, Selvaraju Thangavelu
Journal: The Journal of Physical Chemistry C
Year: 2022


Layered Porous Graphitic Carbon Nitride Stabilized Effective Co₂SnO₄ Inverse Spinel as a Bifunctional Electrocatalyst for Overall Water Splitting

Authors: Sathiya Bama Sundararaj, Saravanakumar Tamilarasan, Selvaraju Thangavelu
Journal: Langmuir
Year: 2022