Khalafallah Diab, Wu Zongxiao, Zhi Mingjia, Hong Zhanglian
State Key Laboratory of Silicon Material, School of, Materials Science and Engineering, Zhejiang University, 38 Zheda Road, Hangzhou, 310027, P. R. China.
Mechanical Design and Materials Department, Faculty of, Energy Engineering, Aswan University, P.O. Box, 81521, Aswan, Egypt.
Chemistry. 2020 Feb 17;26(10):2251-2262. doi: 10.1002/chem.201904991. Epub 2020 Feb 10.
The design of hierarchical electrodes comprising multiple components with a high electrical conductivity and a large specific surface area has been recognized as a feasible strategy to remarkably boost pseudocapacitors. Herein, we delineate hexagonal sheets-in-cage shaped nickel-manganese sulfides (Ni-Mn-S) with nanosized open spaces for supercapacitor applications to realize faster redox reactions and a lower charge-transfer resistance with a markedly enhanced specific capacitance. The hybrid was facilely prepared through a two-step hydrothermal method. Benefiting from the synergistic effect between Ni and Mn active sites with the improvement of both ionic and electric conductivity, the resulting Ni-Mn-S hybrid displays a high specific capacitance of 1664 F g at a current density of 1 A g and a capacitance of 785 F g is maintained at a current density of 50 A g , revealing an outstanding capacity and rate performance. The asymmetric supercapacitor device assembled with the Ni-Mn-S hexagonal sheets-in-cage as the positive electrode delivers a maximum energy density of 40.4 Wh kg at a power density of 750 W kg . Impressively, the cycling retention of the as-fabricated device after 10 000 cycles at a current density of 10 A g reaches 85.5 %. Thus, this hybrid with superior capacitive performance holds great potential as an effective charge-storage material.
设计包含具有高电导率和大比表面积的多个组件的分级电极,已被认为是显著提高赝电容器性能的一种可行策略。在此,我们描述了用于超级电容器应用的具有纳米级开放空间的笼中六边形片状硫化镍锰(Ni-Mn-S),以实现更快的氧化还原反应和更低的电荷转移电阻,并显著提高比电容。该复合材料通过两步水热法轻松制备。得益于Ni和Mn活性位点之间的协同效应以及离子电导率和电导率的提高,所得的Ni-Mn-S复合材料在1 A g的电流密度下显示出1664 F g的高比电容,在50 A g的电流密度下保持785 F g的电容,展现出出色的容量和倍率性能。以笼中六边形片状Ni-Mn-S作为正极组装的不对称超级电容器装置,在750 W kg的功率密度下可提供40.4 Wh kg的最大能量密度。令人印象深刻的是,所制备的装置在10 A g的电流密度下经过10000次循环后的循环保持率达到85.5%。因此,这种具有优异电容性能的复合材料作为一种有效的电荷存储材料具有巨大的潜力。