TY - JOUR
T1 - Multi-Electron Reaction-Boosted High Energy Density Batteries
T2 - Material and System Innovation
AU - Guo, Rui Qi
AU - Wu, Feng
AU - Wang, Xin Ran
AU - Bai, Ying
AU - Wu, Chuan
N1 - Publisher Copyright:
© 2022 Editorial Office of Chinese Journal of Plant Ecology. All rights reserved.
PY - 2022/12/28
Y1 - 2022/12/28
N2 - The continuous development of the global energy structure transformation has put forward higher demands upon the development of batteries. The improvements of the energy density have become one of the important indicators and hot topic for novel secondary batteries. The energy density of existing lithium-ion battery has encountered a bottleneck due to the limitations of material and systems. Herein, this paper introduces the concept and development of multi-electron reaction materials over the past twenty years. Guided by the multi-electron reaction, light weight electrode and multi-ion effect, current development strategies and future trends of high-energy-density batteries are highlighted from the perspective of materials and structure system innovation. Typical cathode and anode materials with the multi-electron reactions are summarized from cation-redox to anion-redox, from intercalation-type to alloying-type, and from liquid systems to solid-state lithium batteries. The properties of the typical materials and their engineering prospects are comprehensively discussed, and additionally, the application potential and the main challenges currently encountered by solid-state batteries are also introduced. Finally, this paper gives a comprehensive outlook on the development of high-energy-density batteries.
AB - The continuous development of the global energy structure transformation has put forward higher demands upon the development of batteries. The improvements of the energy density have become one of the important indicators and hot topic for novel secondary batteries. The energy density of existing lithium-ion battery has encountered a bottleneck due to the limitations of material and systems. Herein, this paper introduces the concept and development of multi-electron reaction materials over the past twenty years. Guided by the multi-electron reaction, light weight electrode and multi-ion effect, current development strategies and future trends of high-energy-density batteries are highlighted from the perspective of materials and structure system innovation. Typical cathode and anode materials with the multi-electron reactions are summarized from cation-redox to anion-redox, from intercalation-type to alloying-type, and from liquid systems to solid-state lithium batteries. The properties of the typical materials and their engineering prospects are comprehensively discussed, and additionally, the application potential and the main challenges currently encountered by solid-state batteries are also introduced. Finally, this paper gives a comprehensive outlook on the development of high-energy-density batteries.
KW - electrode material system
KW - high energy density
KW - lithium-ion batteries
KW - multi-electron reaction
KW - solid-state batteries
UR - http://www.scopus.com/inward/record.url?scp=85153397579&partnerID=8YFLogxK
U2 - 10.13208/j.electrochem.2219011
DO - 10.13208/j.electrochem.2219011
M3 - Review article
AN - SCOPUS:85153397579
SN - 1006-3471
VL - 28
JO - Journal of Electrochemistry
JF - Journal of Electrochemistry
IS - 12
M1 - 2219011
ER -