Department of Electronics and Radio Engineering, Institute for Wearable Convergence Electronics, Kyung Hee University, 1 Seocheon-dong, Giheung-gu, Yongin-si, Gyeonggi-do 446-701, Republic of Korea.
Nanoscale. 2016 Jan 14;8(2):812-25. doi: 10.1039/c5nr05643h.
Hierarchical three-dimensional (3D) porous nanonetworks of nickel-cobalt layered double hydroxide (Ni-Co LDH) nanosheets (NSs) are grown and decorated on flexible conductive textile substrate (CTs) via a simple two-electrode system based electrochemical deposition (ED) method. By applying a proper external cathodic voltage of -1.2 V for 15 min, the Ni-Co LDH NSs are densely deposited over the entire surface of the CTs with good adhesion. The flexible Ni-Co LDH NSs on CTs (Ni-Co LDH NSs/CTs) architecture with high porosity facilitates enhanced electrochemical performance in 1 M KOH electrolyte solution. The effect of growth concentration and external cathodic voltage on the electrochemical properties of Ni-Co LDH NSs/CTs is also investigated. The Ni10Co5 LDH NSs/CTs electrode exhibits a high specific capacitance of 2105 F g(-1) at a current density of 2 A g(-1) as well as an excellent cyclic stability as a pseudocapacitive electrode due to the advantageous properties of 3D interconnected porous frameworks of Ni10Co5 LDH NSs/CTs. This facile fabrication of bimetallic hydroxide nanostructures on CTs can provide a promising electrode for low-cost energy storage device applications.
通过基于电化学沉积(ED)的简单两电极系统,在柔性导电纺织品基底(CTs)上生长和修饰了具有分层结构的镍钴层状双氢氧化物(Ni-Co LDH)纳米片(NSs)的分层三维(3D)多孔纳米网络。通过施加适当的-1.2 V 外部阴极电压 15 分钟,Ni-Co LDH NSs 可以很好地附着在 CTs 的整个表面上密集沉积。具有高孔隙率的柔性 Ni-Co LDH NSs/CTs 结构有利于在 1 M KOH 电解质溶液中增强电化学性能。还研究了生长浓度和外部阴极电压对 Ni-Co LDH NSs/CTs 电化学性能的影响。Ni10Co5 LDH NSs/CTs 电极在 2 A g(-1) 的电流密度下具有 2105 F g(-1) 的高比电容,以及作为赝电容电极的优异循环稳定性,这归因于 Ni10Co5 LDH NSs/CTs 的 3D 互连多孔框架的优势特性。这种在 CTs 上制备双金属氢氧化物纳米结构的简便方法可为低成本储能器件应用提供有前景的电极。