MIL-53(Fe)@RGO as anode materials for lithium ion batteries and sodium ion batteries

Abstract

锂离子电池和钠离子电池具有很大的应用前景,但其常见的三类负极材料存在一些问题限制了他们的进一步发展。常见的嵌入型材料通常容量较低、合金化材料体积变化严重和稳定性差、转化型材料存在大的体积变化和电势滞后,采用纳米化、碳材料复合等方法无法从本质上解决这些问题,因此开发新的负极材料具有重要意义。金属有机框架(MOFs)材料是由金属离子和有机配体配位形成的具有三维结构的多孔材料,具有丰富的结构,其结构有利于离子的快速传输,并且其金属中心离子和有机配体均有可能作为储锂(钠)的位点,因此有望成为新的锂(钠)离子电池负极材料。在本文中,我们选择了由铁离子和对苯二甲酸构筑的MOFs材料MIL-53(Fe)作为...Lithium ion batteries and sodium ion batteries have attracted many researchers’ attention. However, there are some problems for the three main kinds of anode materials, which limit their application. The capacity of insertion materials is usually low. And large volume change of alloying materials leads to low cycle stability and short lives. As for conversion materials, potential hysteresis is an ...学位:理学硕士院系专业:化学化工学院_物理化学学号:2052014115161

    Similar works