Institute of Artificial Photosynthesis, State Key Laboratory of Fine Chemicals, DUT-KTH Joint Education and Research Center on Molecular Devices, Dalian University of Technology (DUT) , Dalian 116024, China.
Department of Chemistry, KTH Royal Institute of Technology , 110044 Stockholm, Sweden.
ACS Appl Mater Interfaces. 2017 Jul 26;9(29):24600-24607. doi: 10.1021/acsami.7b06231. Epub 2017 Jul 14.
Bifunctional electrocatalysts are highly desired for overall water splitting. Herein, the design and fabrication of three-dimensional (3D) hierarchical earth-abundant transition bimetallic phosphide arrays constructed by one-dimensional tubular array that was derived from assembling two-dimensional nanosheet framework has been reported by tailoring the Co/Ni ratio and tunable morphologies, and zero-dimensional (0D) graphene dots were embedded on Co-Ni phosphide matrix to construct 0D/2D tubular array as a highly efficient electrode in the hydrogen evolution reaction (HER) and oxygen evolution reaction (OER). On the basis of advanced merits, such as the high surface-active sites, well-dispersed graphene dots, and enhanced electron transfer capacity as well as the confinement effect of the graphene dots on the nanosheets, the integrated GDs/CoNiP tubular arrays as anode and cathode exhibit excellent OER and HER performance. By use of GDs/CoNiP arrays in the two-electrode setup of the device, a remarkable electrocatalytic performance for full water splitting has been achieved with a high current density of 10 mA cm at 1.54 V and outstanding long-term operation stability in an alkaline environment, indicating a promising system based on nonprecious-metal electrocatalysts toward potential practical devices of overall water splitting.
双功能电催化剂对于全水分解是非常需要的。本文通过调控 Co/Ni 比和可调形态,设计并制备了由一维管状阵列组成的三维(3D)分层丰富过渡金属磷化物阵列,该一维管状阵列是由二维纳米片框架组装而成的,同时还在 Co-Ni 磷化物基体上嵌入了零维(0D)石墨烯点,以构建 0D/2D 管状阵列,作为在析氢反应(HER)和析氧反应(OER)中具有高效能的电极。基于先进的优点,例如高表面活性位点、分散良好的石墨烯点、增强的电子转移能力以及石墨烯点对纳米片的限制效应,集成的 GDs/CoNiP 管状阵列作为阳极和阴极,在碱性环境中表现出优异的 OER 和 HER 性能。在器件的两电极设置中使用 GDs/CoNiP 阵列,在 1.54 V 时实现了高达 10 mA cm 的电流密度的显著电催化全水分解性能,并且在碱性环境中具有出色的长期运行稳定性,表明该系统基于非贵金属电催化剂,有望成为全水分解的实用设备。