Huang, Jow-Lay
(redaktør)
Energy Storage and Conversion Materials e-bog
436,85 DKK
This book explores the fundamental properties of a wide range of energy storage and conversion materials, covering mainstream theoretical and experimental studies and their applications in green energy. It presents a thorough investigation of diverse physical, chemical, and material properties of rechargeable batteries, supercapacitors, solar cells, and fuel cells, covering the development of the…
This book explores the fundamental properties of a wide range of energy storage and conversion materials, covering mainstream theoretical and experimental studies and their applications in green energy. It presents a thorough investigation of diverse physical, chemical, and material properties of rechargeable batteries, supercapacitors, solar cells, and fuel cells, covering the development of theoretical simulations, machine learning, high-resolution experimental measurements, and excellent device performance.Covers potential energy storage (rechargeable batteries and supercapacitors) and energy conversion (solar cells and fuel cells) materialsDevelops theoretical predictions and experimental observations under a unii ed quasi-particle frameworkIllustrates up-to-date calculation results and experimental measurementsDescribes successful synthesis, fabrication, and measurements, as well as potential applications and near-future challengesPromoting a deep understanding of basic science, application engineering, and commercial products, this work is appropriate for senior graduate students and researchers in materials, chemical, and energy engineering and related disciplines.
E-bog
436,85 DKK
Forlag
CRC Press
Udgivet
03.05.2023
Længde
339 sider
Genrer
Energy
Sprog
English
Format
epub
Beskyttelse
LCP
ISBN
9781000868777
This book explores the fundamental properties of a wide range of energy storage and conversion materials, covering mainstream theoretical and experimental studies and their applications in green energy. It presents a thorough investigation of diverse physical, chemical, and material properties of rechargeable batteries, supercapacitors, solar cells, and fuel cells, covering the development of theoretical simulations, machine learning, high-resolution experimental measurements, and excellent device performance.Covers potential energy storage (rechargeable batteries and supercapacitors) and energy conversion (solar cells and fuel cells) materialsDevelops theoretical predictions and experimental observations under a unii ed quasi-particle frameworkIllustrates up-to-date calculation results and experimental measurementsDescribes successful synthesis, fabrication, and measurements, as well as potential applications and near-future challengesPromoting a deep understanding of basic science, application engineering, and commercial products, this work is appropriate for senior graduate students and researchers in materials, chemical, and energy engineering and related disciplines.
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