Li Xuan, Liu Lingran, Tu Chengyu, Zhang Quan, Yang Xinchun, Kolokolov Daniil I, Maltanava Hanna, Belko Nikita, Poznyak Sergey, Samtsov Michael, Guo Haixin, Wu Shuping, Zhu Maiyong
Research School of Polymeric Materials, School of Materials Science & Engineering, Jiangsu University, Zhenjiang 212013, China.
State Key Laboratory for Modification of Chemical Fibers and Polymer Materials, College of Materials Science and Engineering, Donghua University, Shanghai 201620, China.
Nanomaterials (Basel). 2023 Dec 20;14(1):22. doi: 10.3390/nano14010022.
Zn-BTC (H3BTC refers to 1, 3, 5-benzoic acid) MOF was used as a self-template and a zinc source to prepare ZnS/NiS with a layered heterogeneous structure as a promising electrode material using cation exchange and solid-phase vulcanization processes. The synergistic effect of the two metal sulfides enhances the application of ZnS/NiS. And the high specific surface area and abundant active sites further promote the mass/charge transfer and redox reaction kinetics. In the three-electrode system, the specific capacitance was as high as 1547 F/g at a current density of 1 A/g, along with satisfactory rate capability (1214 F/g at 6 A/g) and cycling performance. Coupled with activated carbon (AC), the prepared hybrid device (ZnS/NiS as the positive electrode and AC as the negative electrode) (ZnS/NiS/AC) can be operated under a potential window of 1.6 V and provides a high energy density of 26.3 Wh/kg at a power density of 794 W/kg. Notably, the assembled ZnS/NiS//AC showed little capacity degradation after 5000 charge/discharge cycles.
采用Zn-BTC(H3BTC指1,3,5-苯甲酸)金属有机框架作为自模板和锌源,通过阳离子交换和固相硫化工艺制备具有层状异质结构的ZnS/NiS,作为一种有前景的电极材料。两种金属硫化物的协同效应增强了ZnS/NiS的应用。并且高比表面积和丰富的活性位点进一步促进了质量/电荷转移和氧化还原反应动力学。在三电极体系中,在1 A/g的电流密度下比电容高达1547 F/g,同时具有令人满意的倍率性能(6 A/g时为1214 F/g)和循环性能。与活性炭(AC)耦合,制备的混合器件(以ZnS/NiS为正极,AC为负极)(ZnS/NiS/AC)可在1.6 V的电位窗口下运行,在794 W/kg的功率密度下提供26.3 Wh/kg的高能量密度。值得注意的是,组装的ZnS/NiS//AC在5000次充放电循环后容量几乎没有下降。