Nikhil Y G | Chemistry | Best Researcher Award

Mr. Nikhil Y G | Chemistry | Best Researcher Award

Maharaja Institute of Technology Mysore | India

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Early Academic Pursuits

Mr. Nikhil Y G laid the foundation of his scientific career with a strong focus on chemistry. Beginning with a bachelor’s degree in chemistry, physics, and mathematics, he developed a deep interest in the experimental and analytical aspects of science. His academic journey progressed with a master’s degree in general chemistry, which honed his understanding of chemical synthesis, analytical techniques, and experimental validation. This strong academic base eventually led him to pursue doctoral research in analytical chemistry, where he deepened his expertise in material science, nanotechnology, and bioanalytical studies.

Professional Endeavors

His career trajectory demonstrates a balance of both research and teaching. With several years of teaching experience at reputed institutions, he contributed to shaping young minds in chemistry and related fields. Alongside teaching, his doctoral research at Visvesvaraya Technological University and Maharaja Institute of Technology Mysuru allowed him to explore frontier areas such as nanoparticle synthesis, enzyme-mimicking behavior, and battery technology. His role as a mentor and tutor also highlights his dedication to education beyond formal classrooms.

Contributions and Research Focus

The core of Mr. Nikhil’s research lies in the synthesis of metal-based and metal-doped nanoparticles and the study of their biological and catalytic properties. His investigations into the enzyme-like activities of nanomaterials have opened new pathways for bioanalytical sensing and diagnostic applications. He has developed analytical methods for enzyme detection, validated through kinetic studies, and has extended his research into emerging areas such as energy storage and battery technology. His work embodies the integration of nanoscience with healthcare and energy solutions.

Academic Publications and Research Dissemination

Mr. Nikhil has authored multiple peer-reviewed articles that reflect his contributions to nanotechnology, bio-catalysis, and analytical chemistry. His publications include studies on vanadium oxide nanozymes as glucose sensors, tungsten oxide nanoparticles mimicking peroxidase activity, and copper oxide nanomaterials with biomedical potential. Additionally, his collaborative work on spectrophotometric methods for hemoglobin detection and hydrogen peroxide quantification demonstrates his versatility in applied analytical chemistry. His manuscripts under review further indicate his continuing momentum in impactful research.

Accolades and Recognition

His scholarly efforts have been acknowledged through acceptance in reputed journals such as Biochemical and Biophysical Research Communications, Nano-Structures & Nano-Objects, and Chemical Science Review and Letters. His ability to combine innovation in nanomaterial synthesis with practical applications in diagnostics and environmental monitoring has established him as a promising researcher in his field. His contributions are also recognized through collaborative work with peers and mentors, underscoring his ability to work across interdisciplinary domains.

Impact and Influence

The significance of his research lies in its dual impact on science and society. His work on nanozyme-based systems provides cost-effective and efficient alternatives to natural enzymes, with potential applications in healthcare diagnostics, environmental monitoring, and food safety. By validating these methods in real samples such as serum, water, vegetables, and milk, he bridges the gap between laboratory innovation and real-world application. His current exploration in battery technology signals his adaptability and vision to contribute to sustainable energy solutions, further extending the societal relevance of his work.

Legacy and Future Contributions

Looking ahead, Mr. Nikhil’s work holds promise in advancing the fields of nanozymes, bioanalytical chemistry, and renewable energy. His future contributions are expected to strengthen the applications of nanomaterials in medical diagnostics and green technologies. His commitment to both teaching and research ensures that his legacy will be carried forward not only through his publications and innovations but also through the students and researchers he mentors.

Publications


Article: Oxygen deficient MoO₃ nanoparticles as peroxidase substitutes, their substrate-nanozyme interactions and real time validation in human serum sample
Authors: Nikhil Y. Gangadhara, Manju B, P. Kiran Kumar, Avinash Krishnegowda, Honnur Krishna, K.S. Mahesh Lohith, Ravishankar H. Sadashivanna, Raghavendra Ravikumar
Journal: Journal of Pharmaceutical and Biomedical Analysis
Year: 2025


Article: Evaluation of peroxidase mimicking behaviour of V₂O₅ nanozymes with various morphologies and its application as glucose sensor via cascade mechanism in human serum samples
Authors: Nikhil Y. Gangadhara, Manju B, P. Kiran Kumar, Honnur Krishna, Anantharaman Shivakumar, Ravishankar H. Sadashivanna, Avinash Krishnegowda
Journal: Biochemical and Biophysical Research Communications
Year: 2025


Article: Oxalic acid capped tungsten oxide nanozyme mimicking peroxidase activity, its synthesis characterization, and kinetic data validation via spectrophotometric studies
Authors: Ravishankar H. Sadashivanna, Honnur Krishna, Anantharaman Shivakumar, Nikhil Y. Gangadhara, K.S. Mahesh Lohith, Avinash Krishnegowda
Journal: Nano-Structures & Nano-Objects
Year: 2024


Article: Analytical Determination of Hemoglobin by Spectrophotometric Method
Authors: Nikhil Y. G.
Journal:  Grenze Scientific Society Proceedings
Year: 2023


Article: Fe₃O₄ Nano Particle Catalysed Spectrophotometric Method for the Quantification of Hydrogen Peroxide using Pyrocatechol and 3-Methyl-2 Benzothiazolinehydrazone Hydrochloride: Applications in Water, Vegetables and Milk samples
Authors: Nikhil Y. G.
Journal: Chemical Science Review and Letters
Year: 2017


Conclusion

Mr. Nikhil Y G stands as an emerging researcher who has combined academic excellence, innovative research, and teaching experience to build a promising career in analytical chemistry and nanotechnology. His achievements in nanoparticle synthesis, enzyme-mimicking studies, and analytical method development highlight both his technical expertise and his vision for socially relevant science. With his expanding focus into battery technology, his contributions are poised to impact both healthcare and sustainable energy sectors, making him a valuable contributor to the scientific community and a strong candidate for recognition as a best researcher.

Tigabu Bekele | Chemistry | Best Researcher Award

Mr. Tigabu Bekele | Chemistry | Best Researcher Award

Mekdela Amba University | Ethiopia

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Early Academic Pursuits

Tigabu Bekele embarked on his academic journey with a Bachelor of Science degree in Chemistry from Adama Science and Technology University, where he demonstrated exceptional performance with a CGPA of 3.25. He furthered his studies by pursuing a Master of Science degree in Inorganic Chemistry at Haramaya University, achieving a remarkable CGPA of 3.53 and earning accolades for an outstanding thesis.

Professional Endeavors

With a solid educational foundation, Tigabu Bekele delved into the realm of academia, serving as a Lecturer in Inorganic Chemistry at Mekdela Amba University for 5 years and 6 months. His dedication and expertise led him to assume the role of Department Head of Chemistry for 2 years and 1 month. Currently, he holds the esteemed position of Registrar Directorate Director at Mekdela Amba University, where he continues to make significant contributions to the academic community.

Contributions and Research Focus

Tigabu Bekele's research interests span across various domains, with a primary focus on nanotechnology, photocatalysis, and environmental chemistry. His extensive research portfolio includes groundbreaking studies on nanocomposites, heterojunction photocatalysts, and the application of nanoparticles in electrochemical sensing. Through his meticulous investigations, Tigabu has contributed valuable insights to the fields of material science and environmental remediation.

Accolades and Recognition

Tigabu Bekele's scholarly achievements have garnered widespread recognition, evident from his numerous published research articles and review papers in reputable journals. His contributions to the scientific community have been lauded, exemplified by his impactful research on photocatalytic degradation and nanoparticle therapy for antibiotic-resistant bacteria. Tigabu's dedication to advancing scientific knowledge has earned him respect and acclaim from peers and mentors alike.

Impact and Influence

Through his innovative research endeavors, Tigabu Bekele has made a profound impact on the academic landscape, shaping the discourse in nanotechnology and environmental chemistry. His work has not only expanded the frontiers of scientific understanding but also holds promise for addressing pressing global challenges, such as water pollution and antibiotic resistance. Tigabu's pioneering contributions continue to inspire fellow researchers and pave the way for transformative advancements in science and technology.

Legacy and Future Contributions

As Tigabu Bekele continues to chart new territories in scientific inquiry, his legacy as a visionary researcher and educator grows evermore significant. With a steadfast commitment to excellence and a passion for knowledge dissemination, Tigabu envisions a future where his research findings catalyze positive change and innovation. Through mentorship and collaboration, he aims to nurture the next generation of scientists and foster a culture of scientific inquiry and discovery that transcends boundaries. Tigabu Bekele's journey is emblematic of the transformative power of curiosity and perseverance in driving scientific progress and shaping a brighter tomorrow.

Notable Publications

A review on the medicinal applications of flavonoids from aloe species 2024

Theoretical Investigation of the Interplay of Superconductivity and Magnetism in Ba1−xKxFe2As2 Superconductor in a Two-Band Model by Using the Bogoliubov Transformation Formalism 2023 (4)