This two-volume book set covers the recent advancements in the fabrication of flexible optoelectronic devices. It also provides different strategies and concepts related to the processing and application of advanced nanomaterials with layered structures for optoelectronic devices.
Advanced Nanomaterials for Solution-Processed Flexible Optoelectronic Devices (two-volume set) is made up of two independent volumes. Volume 1- Advanced Nanomaterials for Solution-Processed Flexible Optoelectronic Devices, provides up-to-date and state-of-the-art knowledge centered on the various non-layered nanomaterials and its different types of application in optoelectronic device fabrication. It discusses how to process non-layered advanced nanomaterials such as carbon nanotubes, fullerenes, nanowires, colloidal quantum dots, inorganic halide perovskite, perovskite nanomaterials stabilized in porous materials, doped-ZnO, lead chalcogenide nano crystals etc. for the easy fabrication of the optoelectronic devices at an industrial scale. Throughout the book the authors not only demonstrate device fabrication, but the processing of the advanced nanomaterials to make it suitable for wide applications as different components in optoelectronics. Volume two -Layered Nanomaterials for Solution-Processed Optoelectronics focuses on the processing and application of the 2D MXene into devices for energy conversion and storage. The readers will get insight into large area fabrication methods of the flexible devices using advanced nanomaterials with layered structures such as graphene, conjugated COFs, 2D-hBN (hexagonal boron nitride), silicene, two-dimensional polymer, transition metal dichalcogenides, black phosphorous etc. Each book also presents discussion on the current challenges and future perspectives for the proper processing and utilization of advanced nanomaterials for fabrication of devices.
This book set is intended for graduate students, researchers and engineers working in the area of advanced nanomaterials, energy conversion, energy storage, sensors and different types of optoelectronic devices.
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Dr. Manjeet Singh completed his Ph.D. in Chemistry from IIT-BHU, India in the area of nanoparticles synthesis and characterization. He has worked in the area of optoelectronic devices for the last 12 years. He has also worked on the fabrication of solution-processed perovskite, CIGS and CZTS and solar cells at Osaka University, Japan and Incheon National University, South Korea. His research group is also working on the silver nanowire-based flexible optoelectronic devices.
Dr. Ashish Kumar Singh has a Ph.D. from IIT-BHU, India and post doc from University of South Africa, Johannesburg, South Africa. He is an Assistant Professor, Department of Chemistry, Hansraj College, University of Delhi, India, and is currently working in the area of preparation and application of advanced materials for corrosion inhibitors. He is among the highly cited top 2% scientist according to the list published by Stanford University every year.
Dr. Balram Pani is a Professor at Bhaskaracharya College of Applied Sciences, University of Delhi, India. He obtained his Ph.D. from Jawaharlal Nehru University. Dr. Pani has 20 years of research and teaching experience in the field of chemistry and Environmental Science.
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