假电容
材料科学
石墨烯
阳极
插层(化学)
超级电容器
纳米技术
兴奋剂
化学工程
复合数
电极
电化学
二硫化钼
无机化学
复合材料
光电子学
工程类
物理化学
化学
作者
Xin Xu,Ruisheng Zhao,Wei Ai,Bo Chen,Hongfang Du,Wu Lishu,Hua Zhang,Wei Huang,Ting Yu
标识
DOI:10.1002/adma.201800658
摘要
Transition-metal disulfide with its layered structure is regarded as a kind of promising host material for sodium insertion, and intensely investigated for sodium-ion batteries. In this work, a simple solvothermal method to synthesize a series of MoS2 nanosheets@nitrogen-doped graphene composites is developed. This newly designed recipe of raw materials and solvents leads the success of tuning size, number of layers, and interplanar spacing of the as-prepared MoS2 nanosheets. Under cut-off voltage and based on an intercalation mechanism, the ultrasmall MoS2 nanosheets@nitrogen-doped graphene composite exhibits more preferable cycling and rate performance compared to few-/dozens-layered MoS2 nanosheets@nitrogen-doped graphene, as well as many other reported insertion-type anode materials. Last, detailed kinetics analysis and density functional theory calculation are also employed to explain the Na+- storage behavior, thus proving the significance in surface-controlled pseudocapacitance contribution at the high rate. Furthermore, this work offers some meaningful preparation and investigation experiences for designing electrode materials for commercial sodium-ion batteries with favorable performance.
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