图书简介
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 uni¿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.
1. Introduction
Ngoc Thanh Thuy Tran, Chin-Lung Kuo, Ming-Fa Lin, Wen-Dung Hsu, Jeng-Shiung Jan, Hong-Ping Lin, Chia-Yun Chen, Yuh-Lang Lee, Shu-Yi Tsai, and Jow-Lay Huang
2. Molecular Dynamics Simulation of Amorphous Silicon Anode in Li-Ion Batteries
Li-Yi Pan and Chin-Lung Kuo
3. Rich Intercalations in Graphite Magnesium Compounds
Yu-Ming Wang, Jheng-Hong Shih, Wei-Bang Li, Thi Dieu Hien Nguyen, and Ming-Fa Lin
4. Na-Intercalation Compounds and Na-Ion Batteries
Hsien-Ching Chung, Wei-Bang Li, Yu-Ming Wang, and Ming-Fa Lin
5. Electronic Properties of LiLaTiO4 Compound
Nguyen Thanh Tuan, Thi Dieu Hien Nguyen, Le Vo Phuong Thuan, and Ming-Fa Lin
6. Electronic Properties of Li2S-Si Heterojunction
Nguyen Thi Han, Vo Khuong Dien, and Ming-Fa Lin
7. Electronic and Magnetic Properties of LiMnO2 Compound
Le Vo Phuong Thuan and Ming-Fa Lin
8. Surface Property of High-Voltage Cathode LiNiPO4 in Lithium-Ion Batteries: A First-Principles Study
Chien-Ke Huang and Wen-Dung Hsu
9. Introductory to Machine Learning Method and Its Applications in Li-Ion Batteries
Zhe-Yun Kee and Ngoc Thanh Thuy Tran
10. SnOx (x = 0,1,2) and Mo Doped SnO2 Nanocomposite as Possible Anode Materials in Lithium-Ion Battery
Sanjaya Brahma and Jow-Lay Huang
11. Polymer Electrolytes Based on Ionic Liquid and Poly(ethylene glycol) via in-situ Photopolymerization of Lithium-Ion Batteries
Jeng-Shiung Jan, Ting-Yuan Lee, Yuan-Shuo Hsu, Song-Hao Zhang, and Chia-Chi Chang
12. Synthesis of Multiporous Carbons with Biomaterials for Applications in Supercapacitors and Capacitive Deionization
Chun-Han Hsu, Zheng-Bang Pan, and Hong-Ping Lin
13. Low-Dimensional Heterostructure-Bas
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