This book includes peer reviewed articles from IEMDST-2024, held on 04-05 July at NIT Warangal in India. The motivation behind the International Conference on Emerging Multifunctional Materials and Devices for Sustainable Technologies (IEMDST-2024) is to address and highlight the critical role of advanced materials and devices in the pursuit of sustainable technologies. The conference is organized by the Department of Physics at the National Institute of Technology, Warangal, in collaboration with the Department of Applied Sciences of NIT Goa. It serves as a catalyst for the exchange of…mehr
This book includes peer reviewed articles from IEMDST-2024, held on 04-05 July at NIT Warangal in India. The motivation behind the International Conference on Emerging Multifunctional Materials and Devices for Sustainable Technologies (IEMDST-2024) is to address and highlight the critical role of advanced materials and devices in the pursuit of sustainable technologies. The conference is organized by the Department of Physics at the National Institute of Technology, Warangal, in collaboration with the Department of Applied Sciences of NIT Goa. It serves as a catalyst for the exchange of knowledge and ideas among researchers and professionals from various fields related to materials science and technology.
Dr. D. Paul Joseph D. is currently working as an Associate Professor in the Department of Physics at the National Institute of Technology Warangal (NIT-Warangal). He obtained his Ph.D. in Physics-Materials Science (Interdisciplinary) from the Department of Nuclear Physics, University of Madras, in 2009. He was a post-doctoral fellow at the Centre for Condensed Matter Sciences (CCMS) at National Taiwan University, Taipei, Taiwan. His active research areas are alternative transparent conducting electrodes (both metals and metal oxides in thin film form), Proximity effect between Superconductors and Half-metallic Ferromagnets, alternative components for dye-sensitized solar cells, nanostructured materials for batteries, Swift Heavy-Ion-beam irradiation effects on materials and photocatalytic activity for degradation of pollutants.
Dr. Jayalakshmi V. is currently an Associate Professor in the Department of Physics at the National Institute of Technology, Warangal. Prior tojoining NIT Warangal, she was a postdoc at Queen s University, Canada and Georgia Institute of Technology, USA. She obtained her Ph.D. in Physics from the Centre for Nano and Soft Matter Sciences, Bangalore . Her research interests include synthesis of nematic and chiral nematic emulsions, the development of technologies for detecting Alzheimer's biomarkers using liquid crystals and ZnO tetrapods for novel functional applications.
Dr. K. Thangaraju is currently working as a Professor in Department of Physics at National Institute of Technology, Warangal, India. He obtained his PhD from Anna University, Chennai, India. His research area includes organic semiconductors, organic optoelectronic devices such as OLEDs, OPVs, OTFTs, photodetectors, and Organic/Inorganic Hybrid nanostructured thin films and their optoelectronic devices.
Inhaltsangabe
.- Time Saving Synthesis Approach of WS2 Nanoparticles by Ethylene Glycol Assisted Solvothermal Method.- A Facile Synthesis of TGA Stabilized ZnSe Quantum Dots for Energy Harvesting Applications.- Investigation of Structural and Magnetic Property of Fe3O4 and CoFe2O4 Nanoclusters for Biomedical Application.- Study of Structural, Optical and Magnetic Properties of Ni0.8Zn0.2Fe2O4 Ferrites Calcined at Different Temperatures.- Influence of calcination temperature on Structural, Optical and Magnetic Properties of Nanocrystalline Ni0.5Zn0.5Fe2O4 Ferrite, etc.
.- Time Saving Synthesis Approach of WS2 Nanoparticles by Ethylene Glycol Assisted Solvothermal Method.- A Facile Synthesis of TGA Stabilized ZnSe Quantum Dots for Energy Harvesting Applications.- Investigation of Structural and Magnetic Property of Fe3O4 and CoFe2O4 Nanoclusters for Biomedical Application.- Study of Structural, Optical and Magnetic Properties of Ni0.8Zn0.2Fe2O4 Ferrites Calcined at Different Temperatures.- Influence of calcination temperature on Structural, Optical and Magnetic Properties of Nanocrystalline Ni0.5Zn0.5Fe2O4 Ferrite, etc.
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