Kumar Singh / Sharma / Subramanian | Advanced Functional Materials and Devices | Buch | 978-981-9266-98-2 | www.sack.de

Buch, Englisch, 217 Seiten, Format (B × H): 155 mm x 235 mm

Reihe: Springer Proceedings in Materials

Kumar Singh / Sharma / Subramanian

Advanced Functional Materials and Devices

Select Proceedings of AFMD 2025
Erscheinungsjahr 2026
ISBN: 978-981-9266-98-2
Verlag: Springer

Select Proceedings of AFMD 2025

Buch, Englisch, 217 Seiten, Format (B × H): 155 mm x 235 mm

Reihe: Springer Proceedings in Materials

ISBN: 978-981-9266-98-2
Verlag: Springer


The book presents select peer-reviewed proceedings of the 3rdInternational Conference on Advanced Functional Materials and Devices (AFMD 2025). It highlights recent advancements in functional materials with a focus on energy, biomedical, and photonic applications. It explores energy-supply and absorbing materials, biocompatible environments for advanced medical technology, and optoelectronic materials for innovative devices. Emphasizing interdisciplinary approaches, this book bridges intrinsic material science with practical applications, offering solutions for urgent societal challenges such as renewable energy, advanced healthcare, and sustainable technologies. Richly illustrated and featuring cutting-edge research contributions from global experts, it provides insights into sustainable energy development, health improvement technologies, and efficient photonic systems.

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Zielgruppe


Research

Weitere Infos & Material


Analysis of the Performances of Electrode and Catalyst Materials for Efficient Sea Water Electrocatalysis.- Effect of Heat Treatment on Microstructure and Mechanical Property of In-situ A356-Mg2Si Composite.- A theoretical study of Anomalous Nernst Conductivity with a Weyl-Semimetal Phase in Co2YSb Heusler alloy.- Complex Impedance Spectroscopy and Dielectric Analysis of Li4Ti5O12 (LTO).- Ni+1 Implantation in SnO2 thin film by ion beam irradiation.- Dielectric, Impedance, and Hydroelectric Properties of Nd-Ti Co-Doped Barium Ferrite Ceramics.- Investigating C60 Thickness and Doping Effects for Efficiency in CsSnCl3 Solar Cells Using SCAPS-1D.- Imbert- Fedorov Effect in Surface Plasmon Exciton Polariton Structure.- Studies on Yttrium Iron Garnet (Y3Fe5O12) Thin Films Synthesized by Pulsed Laser Deposition Technique.- Anomalous Nernst Effect in Topological Insulators surface Irradiated by Linearly Polarized Off-Resonant Electromagnetic Radiation.-Influence of Sintering Temperature on the ZnS Thin Films: Optical and Electrical Properties.- Synthesis of cost-effective iron oxide nanoparticles with natural carbon incorporation.- Stability and Electronic Modulation of Black AsP3: Influence of H2O and O2 Interactions.- Investigation of Plant Mediated Synthesis of CeO2 Nanoparticles and Their Properties.- A Vector Mode Analysis for a Dielectric-Metal-Dielectric Optical fiber.- Harnessing Solar Energy for Modern Defence Applications: A Review.- Probing the electronic properties of Gallium Sul de (GaS): A DFT Study.- Contrasting Crystallinity: A Study of Fertile Goose Eggshell and Australorp Membrane as Functional Material Templates.- Preparation and characterisation of ‘Cd’ doped ZnO nanoparticles for structural and optical properties.


Dr. Anjani Kumar Singh is an Associate Professor in the Department of Physics, Atma Ram Sanatan Dharma College, University of Delhi. He has done his M.Sc. from U P Autonomous College, Varanasi, and Ph.D. from Delhi University in the year 2010. He worked as a teaching cum research fellow at N.S.I.T., New Delhi. During his Ph.D. work and afterwards he has published 35 research papers in peer reviewed international journals and International Conference. He is a life member of the Materials Research Society of India (MRSI). His major research interests are electrostriction-based dielectric materials, fuel cells. He has four edited books with Springer Nature.

Dr. Anjali Sharma is a Fellow at the Institute of Eminence and an Associate Professor at Atma Ram Sanatan Dharma College, University of Delhi. With over 54 research papers in international refereed journals and numerous conference presentations, her research focuses on advanced materials for gas sensing, energy devices, and biomedical applications. She has led multiple funded projects from prestigious organizations like ISRO and DRDO and holds patents on innovative sensor technologies. Dr. Sharma has received several awards, including the Shri Ram Arora Award and the Indo-Asian Best Teacher Award in material science.

Dr. S. Shankar Subramanian is an Assistant Professor in the Department of Physics at Atma Ram Sanatan Dharma College, University of Delhi. With expertise in composite materials, multiferroics, and energy storage technologies, he has authored over 50 SCI-indexed research papers and holds a patent for innovative hydroelectric cell technology. Dr. Shankar’s work spans the synthesis and characterization of advanced materials, focusing on sustainable energy applications. He has successfully led funded research projects and co-authored a book on functional materials. A recipient of multiple research excellence awards, he actively collaborates in cutting-edge research and contributes as a reviewer for reputed journals.


Dr. R. K. Kotnala is a distinguished Indian scientist renowned internationally for his pioneering contributions to net carbon zero, hydroelectric cell, water splitting by non-photocatalytic process, nanomaterials, multiferroic, spintronics, magnetics and biomedical devices metrology. Along with Dr. Jyoti Shah, he played a pivotal role in the groundbreaking invention of a green and clean energy device-hydroelectric cell. Dr. Kotnala is well known in the scientific fraternity for his outstanding contributions in the field of solar cells, multiferroics, spintronics, clean energy, environmental sciences, and values of scientific ethics. He has written many books, chapters and delivered countless scientific lectures in diversified areas. 



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