Department of Chemistry, Tsinghua University, Beijing 100084, People's Republic of China.
Inorg Chem. 2011 Mar 7;50(5):1628-32. doi: 10.1021/ic1023086. Epub 2011 Jan 18.
This paper reports on the synthesis of Co(3)O(4)@graphene composites (CGC) and their applications as anode materials in lithium ion batteries (LIBs). Through a chemical deposition method, Co(3)O(4) nanoparticles (NPs) with sizes in the range of 10-30 nm were homogeneously dispersed onto graphene sheets. Due to their high electrical conductivity, the graphene sheets in the CGC improved the electrical conductivity and the structure stability of CGC. CGC displayed a superior performance in LIBs with a large reversible capacity value of 941 mA hg(-1) in the initial cycle with a large current density and an excellent cyclic performance of 740 mA hg(-1) after 60 cycles, corresponding to 88.3% of the theoretical value of CGC, owing to the interactions between graphene sheets and Co(3)O(4) NPs anchored on the graphene sheets. This synthesis approach may find its application in the design and synthesis of novel electrode materials used in LIBs.
本文报道了 Co(3)O(4)@石墨烯复合材料(CGC)的合成及其作为锂离子电池(LIBs)阳极材料的应用。通过化学沉积法,将尺寸在 10-30nm 范围内的 Co(3)O(4)纳米颗粒(NPs)均匀分散在石墨烯片上。由于其高导电性,CGC 中的石墨烯片提高了 CGC 的电导率和结构稳定性。CGC 在 LIBs 中表现出优异的性能,在大电流密度下的初始循环中具有 941mA hg(-1)的大可逆容量值,在 60 次循环后具有 740mA hg(-1)的优异循环性能,对应于 CGC 的理论值的 88.3%,这归因于石墨烯片和锚定在石墨烯片上的 Co(3)O(4) NPs 之间的相互作用。这种合成方法可能在设计和合成用于 LIBs 的新型电极材料方面得到应用。