This book presents a comprehensive review of recent developments in vanadium-based nanomaterials for next-generation electrochemical energy storage. The basic electrochemical energy storage and conversion equipment are elaborated, and the vanadium-based nanomaterials of the synthesis approaches, characterizations, electrochemical storage mechanisms, and performance optimization tactics are discussed. Examples are taken from various chemical energy storage devices to expound the functions of advanced vanadium-based nanomaterials for specific applications. Finally, various challenges and perspectives on vanadium-based nanomaterial development as an emerging energy storage solution are considered.

  • Describes their intrinsic physical and chemical properties and storage mechanisms for chemical energy storage devices;
  • Provides examples to elaborate on the functions of advanced vanadium-based nanomaterials for specific applications;
  • Discusses the various challenges and perspectives for these emerging energy storage options.



Autorentext

Liqiang Mai is a chair professor at the State Key Lab of Advanced Technology for Materials Synthesis and Processing, the Dean for the School of Materials Science and Engineering, Wuhan University of Technology, China. His research focuses on nanomaterials and nanodevices for electrochemical energy storage.

Lin Xu is a professor at the State Key Lab of Advanced Technology for Materials Synthesis and Processing, Wuhan University of Technology, China. His research focuses on electrochemical energy storage materials and devices.

Wei Chen is an associate professor at the State Key Lab of Advanced Technology for Materials Synthesis and Processing, Wuhan University of Technology, China. His research focuses on functional nanomaterials and electrochemical energy storage.

Titel
Vanadium-Based Nanomaterials for Electrochemical Energy Storage
EAN
9783031447969
Format
E-Book (pdf)
Veröffentlichung
20.11.2023
Digitaler Kopierschutz
Wasserzeichen
Dateigrösse
18.62 MB
Anzahl Seiten
312