| Literature DB >> 29462555 |
Jun Huang1, Junchao Wei1,2, Yingbo Xiao1, Yazhou Xu1, Yujuan Xiao1, Ying Wang1, Licheng Tan1, Kai Yuan1,2, Yiwang Chen1,2.
Abstract
Although cobalt sulfide is a promising electrode material for supercapacitors, its wide application is limited by relative poor electrochemical performance, low electrical conductivity, and inefficient nanostructure. Here, we demonstrated that the electrochemical activity of cobalt sulfide could be significantly improved by Al doping. We designed and fabricated hierarchical core-branch Al-doped cobalt sulfide nanosheets anchored on Ni nanotube arrays combined with carbon cloth (denoted as CC/H-Ni@Al-Co-S) as an excellent self-standing cathode for asymmetric supercapacitors (ASCs). The combination of structural and compositional advantages endows the CC/H-Ni@Al-Co-S electrode with superior electrochemical performance with high specific capacitance (1830 F g-1/2434 F g-1 at 5 mV s-1/1 A g-1) and excellent rate capability (57.2%/72.3% retention at 1000 mV s-1/100 A g-1). The corresponding all-solid-state ASCs with CC/H-Ni@Al-Co-S and multilayer graphene/CNT film as cathode and anode, respectively, achieve a high energy density up to 65.7 W h kg-1 as well as superb cycling stability (90.6% retention after 10 000 cycles). Moreover, the ASCs also exhibit good flexibility and stability under different bending conditions. This work provides a general, effective route to prepare high-performance electrode materials for flexible all-solid-state energy storage devices.Entities:
Keywords: Al-doped cobalt sulfide; Ni nanotubes; all-solid-state supercapacitors; carbon cloth; self-standing
Year: 2018 PMID: 29462555 DOI: 10.1021/acsnano.8b00901
Source DB: PubMed Journal: ACS Nano ISSN: 1936-0851 Impact factor: 15.881