National Synchrotron Radiation Laboratory, University of Science and Technology of China, Hefei, Anhui 230029, China.
Nanoscale. 2017 Jun 1;9(21):6975-6983. doi: 10.1039/c7nr02003a.
Vertical 1T-MoS nanosheets with an expanded interlayer spacing of 9.8 Å were successfully grown on a graphene surface via a one-step solvothermal method. Such unique hybridized structures provided strong electrical and chemical coupling between the vertical nanosheets and graphene layers by means of C-O-Mo bonding. The merits are very beneficial for a high-efficiency electron/ion transport pathway and structural stability. As a proof of concept, the lithium ion battery with the as-obtained hybrid's electrode exhibited excellent rate performance with a 666 mA h g capacity at a high current density of 3500 mA g. We can extend this method to produce various metallic 1T-MX (M = transition metal; X = chalcogen) vertically edged on a graphene frame as one of the promising hetero-structures for several specific applications in the fields of electronics, optics and catalysis.
通过一步溶剂热法,成功地在石墨烯表面生长出具有 9.8Å 扩展层间距的垂直 1T-MoS 纳米片。这种独特的杂化结构通过 C-O-Mo 键在垂直纳米片和石墨烯层之间提供了强大的电和化学耦合。其优点非常有利于高效的电子/离子传输途径和结构稳定性。作为概念验证,具有所获得的杂化电极的锂离子电池在高电流密度为 3500 mA g 时表现出优异的倍率性能,容量为 666 mA h g。我们可以将这种方法扩展到在石墨烯框架上垂直边缘生长各种金属 1T-MX(M=过渡金属;X= 硫属元素),作为电子学、光学和催化等领域中几种特定应用的有前途的杂化结构之一。