在精力地里面对重要应用程序,这份报纸介绍怎么构造新高特定的精力第二等的电池基于概念多电子反应并且由设计多电子电极材料。那些新第二等的电池和他们的关键材料上的最近的进步基于多电子反应的理论是 overviewed。代表性的多电子的电极材料例如金属硼化物,金属氟化物,硫合成电极材料和高铁酸盐简短被介绍,以及新第二等的电池系统与这些构造了材料。因此为新化学电池系统和相关精力材料基于第二等的电池和他们的关键材料的多电子反应机制给开发的意义。
Facing the significant applications in energy field, this paper introduces how to construct new high specific energy secondary batteries based on the concept multi-electron reaction and by designing multi-electron electrode materials. Recent progress on those new secondary batteries and their key materials based on the theory of multi-electron reaction are overviewed. Representative multi-electronic electrode materials, such as metal borides, metal fluorides, sulfur composite electrode materials and ferrates are briefly introduced, as well as the new secondary battery systems constructed with these materials. Thus gives the significance of the development based on multi- electron reaction mechanism of secondary batteries and their key materials for new chemical battery systems and related energy materials.