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ENERGY STORAGE AND CONVERSION

Development of Materials for Energy Storage and Conversion Devices

Masashi Kotobuki (Hrsg.)

EPUB
ca. 72,99

World Scientific Publishing Company img Link Publisher

Naturwissenschaften, Medizin, Informatik, Technik / Technik

Beschreibung

The increasing global population and energy consumption have led to a rapid rise in the usage of fossil fuels in recent years. Consequently, there has been a significant increase in greenhouse gas emissions, which had detrimental effects on aquatic and animal life as well as the ecosystem. To address this problem, efficient energy storage and conversion devices with no greenhouse gas emissions, such as batteries, supercapacitors, and fuel cells, are becoming popular.

The development of suitable materials is essential for making efficient energy storage and conversion devices. Thus, this book is organized to highlight significant breakthroughs in energy storage and conversion systems, focusing on material development.

This book includes 12 researches. For energy storage devices, material research on lithium-ion batteries and supercapacitor is described. Studies on solar cells and solid oxide fuel cells for energy conversion devices are also revealed. Additionally, phase change materials are also introduced as a different type of energy storage devices.

This book will make a substantial contribution in developing efficient energy storage and conversion devices.

Contents:

  • Preface
  • The Effect of Y, Er Co-Doped on the Sintering and Electrical Properties of Mo0.05 Bi1.95O3 Electrolyte Materials for Solid Oxide Fuel Cells (Weixing Qian, Hao Liang, Xuhang Zhu and Jihai Cheng)
  • A Review on Advanced Optimization Strategies of Separators for Aqueous Zinc-Ion Batteries (Fukai Du, Fangfang Wu, Lu Ma, Jinxiu Feng, Xinyu Yin, Yuxi Wang, Xiaojing Dai, Wenxian Liu, Wenhui Shi and Xiehong Cao)
  • Effect of Sintering Temperature on Phase Transformation and Energy Storage Properties of 0.95NaNbO3–0.05Bi(Zn0.5Zr0.5)O3 Ceramics (Ying Ge, Dong Liu, Haifeng Zhang, Shuhao Yan, Bo Shi, and Junjie Hao)
  • Heteroatom (N, P)-Driven Carbon Nanomaterials for High-Energy Storage in Supercapacitors (Yong Liu, Xian Zhang, Ke Zhang, Zifeng Wang and Guang Li)
  • Impact of Annealing on Charge Storage Capability of Thermally Evaporated Molybdenum Oxide Thin Films (Sudesh Kumari, Rameez Ahmad Mir, Sanjay Upadhyay, O P Pandey and Anup Thakur)
  • V2C-Based Lithium Batteries: The Influence of Magnetic Phase and Hubbard Interaction (Jhon W González, Sanber Vizcaya and Eric Suárez Morell)
  • Facile Graphene Quantum Dot-Anchoring Strategy Synthesis of Single-Atom Iron–Nitrogen Electrocatalyst with Enhanced ORR Performance (Huinian Zhang, Suping Jia, Ning Li, Xiaolin Shi and Ziyuan Li)
  • Effect Size of Carbon Micro-Nanoparticles on Cyclic Stability and Thermal Performance of Na2SO4·10H2O–Na2HPO4·12H2O Phase Change Materials (Zengbao Sun, Xin Liu, Shengnian Tie and Changan Wang)
  • An Efficient CoSe2-Co3O4-Ag Hybrid Catalyst for Electrocatalytic Oxygen Evolution (Qichen Liang, Nana Du and Huajie Xu)
  • Simulation and Fabrication of Titanium Dioxide Thin Films for Supercapacitor Electrode Applications (S Harish, Muhammad Hamza, P Uma Sathyakam and Annamalai Senthil Kumar)
  • Ton-Scale Preparation of Single-Crystal Ni-Rich Ternary Cathode Materials for High-Performance Lithium Ion Batteries (Yongfu Cui, Jianzong Man, Leichao Meng, Wenjun Wang, Xueping Fan, Jing Yuan and Jianhong Peng)
  • Investigation on the Influence of Zn Content on the Structural, Optical, Morphological and Electrical Properties of Ternary Compound Cd1–xZnxS Window Layer for CdTe Solar Cell (Ki Tong Hun, Kim Hyon Chol and Jo Hye Gang)
  • Index

Readership: This book can be targeted by a various levels of researchers from undergraduate and beginner to graduate and professional levels for both industry and academic sectors.

KOTOBUKI Masashi is a distinguished professor at the Battery Research Center of Green Energy, Ming Chi University of Technology in Taiwan. He earned his PhD in Materials Science from the University of Yamanashi in Japan in 2006. Over his career, he has held several significant academic positions, including Senior Research Fellow and Research Fellow at the National University of Singapore (NUS), Associate Professor at Hakodate National College of Technology in Japan, Assistant Professor at Tokyo Metropolitan University, and Researcher at Ulm University in Germany. Since August 2021, he has been leading research efforts at Ming Chi University of Technology, focusing on the development of next-generation lithium batteries, post-lithium batteries, solid electrolytes, anion batteries, electrode materials, and separator materials. With a prolific publication record that includes 98 journal articles, 12 review articles, and 7 books, his research has received wide recognition, amassing 5336 citations and an h-index of 34.

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