阴极
阳极
电解质
电子
离子键合
动力控制
材料科学
电子转移
动能
计算机科学
多目标优化
纳米技术
工程物理
电极
化学物理
化学
离子
物理
物理化学
生物化学
有机化学
量子力学
机器学习
催化作用
作者
Yongxin Huang,Feng Wu,Renjie Chen
摘要
Multi-electron reaction can be regarded as an effective way of building high-energy systems (>500 W h kg-1). However, some confusions hinder the development of multi-electron mechanisms, such as clear concept, complex reaction, material design and electrolyte optimization and full-cell fabrication. Therefore, this review discusses the basic theories and application bottlenecks of multi-electron mechanisms from the view of thermodynamic and dynamic principles. In future, high-energy batteries, metal anodes and multi-electron cathodes are promising electrode materials with high theoretical capacity and high output voltage. While the primary issue for the multi-electron transfer process is sluggish kinetics, which may be caused by multiple ionic migration, large ionic radius, high reaction energy barrier, low electron conductivity, poor structural stability, etc., it is urgent that feasible and versatile modification methods are summarized and new inspiration proposed in order to break through kinetic constraints. Finally, the remaining challenges and future research directions are revealed in detail, involving the search for high-energy systems, compatibility of full cells, cost control, etc.
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