Zhao Yufei, Wang Qing, Bian Tong, Yu Huijun, Fan Hua, Zhou Chao, Wu Li-Zhu, Tung Chen-Ho, O'Hare Dermot, Zhang Tierui
Key Laboratory of Photochemical Conversion and Optoelectronic Materials, Technical Institute of Physics and Chemistry, Chinese Academy of Sciences, Beijing, 100190, P. R. China.
Nanoscale. 2015 Apr 28;7(16):7168-73. doi: 10.1039/c5nr01320h.
Ni(3+) doped NiTi layered double hydroxide (NiTi-LDH) monolayer nanosheets with a particle size of ∼ 20 nm and a thickness of ∼ 0.9 nm have been successfully prepared through a facile bottom-up approach. These NiTi-LDH monolayer nanosheets exhibit excellent supercapacitor performance, including a high specific pseudocapacitance (2310 F g(-1) at 1.5 A g(-1)) and long durability compared with bulk LDH, owing to highly exposed conductive Ni(3+) species (NiOOH) which lead to the increased mobility rate of surface charge and electrolyte-transfer. Therefore, this work is expected to take a significant step towards exploring novel 2D monolayer electrode materials with unique physical and chemical properties for applications in energy storage and conversion.
通过一种简便的自下而上方法成功制备了粒径约为20 nm、厚度约为0.9 nm的Ni(3+)掺杂的NiTi层状双氢氧化物(NiTi-LDH)单层纳米片。与块状LDH相比,这些NiTi-LDH单层纳米片表现出优异的超级电容器性能,包括高比赝电容(在1.5 A g(-1)时为2310 F g(-1))和长耐久性,这归因于高度暴露的导电Ni(3+)物种(NiOOH),其导致表面电荷和电解质转移的迁移率增加。因此,这项工作有望朝着探索具有独特物理和化学性质的新型二维单层电极材料迈出重要一步,以应用于能量存储和转换。