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Titlebook: Handbook of Energy Materials; Ram Gupta Living reference work 2025Latest edition Energy Storage.Energy Conversion.Battery Technology.Supe

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發(fā)表于 2025-3-21 16:38:42 | 只看該作者 |倒序瀏覽 |閱讀模式
書目名稱Handbook of Energy Materials
編輯Ram Gupta
視頻videohttp://file.papertrans.cn/422/421246/421246.mp4
概述Reviews exhaustively the key recent research and latest technology into energy materials.Maximizes reader insights into the chemistry behind energy materials and methods to improve device performances
圖書封面Titlebook: Handbook of Energy Materials;  Ram Gupta Living reference work 2025Latest edition  Energy Storage.Energy Conversion.Battery Technology.Supe
描述This handbook comprehensively reviews the basic to the most advanced topics?in the area of different material systems and their composites for advanced energy applications. It covers materials chemistry, various synthesis approaches, and properties of energy materials in the latest technology developed for energy storage (batteries, supercapacitors, fuel cells, hydrogen energy and carbon capture) and energy conversion (photovoltaics, water electrolysis, piezoelectric, thermoelectric. It provides new direction to the readers to better understand the chemistry behind energy materials and methods to improve performances of energy devices. This book will be a very valuable reference source for (1) Postgraduates students and scientist working in the energy-related field of material science, nanoscience, and nanotechnology (2) Industrial practitioners and engineers from the commercial sectors of green energy production and energy storage.?.
出版日期Living reference work 2025Latest edition
關鍵詞Energy Storage; Energy Conversion; Battery Technology; Supercapacitors; Hydrogen Energy; Photovoltaics; Fu
doihttps://doi.org/10.1007/978-981-16-4480-1
isbn_ebook978-981-16-4480-1
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沙發(fā)
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Methylene Blue and Endocarditisthe limited natural availability and environmental regulations. The dissolution of cathode-active materials using different chemical reagents involving redox, ligand-promoted, and other processes with their sequential development steps is given. The general trend over the previous decade is discusse
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Vasopressin and Anterior Pituitary Function,s as electrode materials for decades due to their high surface area density. Hence, this chapter discusses the role of 0D, 1D, 2D, and 3D carbon-based nanostructure materials in supercapacitor applications and their electrochemical performances. Additionally, various carbon-based nanostructured mate
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Vaterschaft aus der Sicht von V?tern different 2D nanomaterials, such as graphene, reduced graphene oxide, TMDs, TMOs, TMHs, MXene, phosphorene, MOF, h-BN, carbon nitride, and their composites. The chapter also includes different synthesis approaches and their characterization technique. As electrodes, 2D material has demonstrated its
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https://doi.org/10.1007/978-3-658-00709-6and electrolytic environment. Further, the capacitive performances of MXene materials have been enhanced by functionalizing/modifying them with various pseudocapacitive entities. As the demand for MXene materials towards supercapacitor applications increases continuously, it’s necessary to have the
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Defining the Debate in Political Theologytes for supercapacitor applications as well as their synthesis protocols. Finally, the current challenges and opportunities, trends and prospects for future research in the field will also be presented.
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