School of Chemical Engineering and Technology, North University of China, Taiyuan, 030051, P. R. China.
School of Environment and Safety, North University of China, Taiyuan, 030051, P. R. China.
Chem Asian J. 2019 Oct 1;14(19):3386-3396. doi: 10.1002/asia.201901137. Epub 2019 Sep 10.
Developing environmentally friendly and highly active water splitting catalysts would be of great significance for clean energy conversion and utilization processes. Heterogeneous CuCo S @Ni(OH) nanorod arrays with abundant oxygen vacancy firstly have been designed through a controllable hydrothermal and electrodeposition method. The synergies and open structures of the particular hierarchical structure together with the abundant oxygen vacancies offer more surface reactive centers, which can promote the electron transfer rate and reduce the activation energy of intermediate species. The CuCo S @Ni(OH) -20 min nanorod arrays are considered as an excellent and robust electrocatalyst for the proton reduction under an alkaline condition with an extraordinary low overpotential of 117 mV at 10 mA cm . The CuCo S @Ni(OH) -20 min heterostructures electrode is also stable and robust for the water oxidation reaction, needing an overpotential of only 250 mV to obtain 100 mA cm . Therefore, an alkaline electrolyzer was designed using CuCo S @Ni(OH) -20 min nanorod arrays as bifunctional electrocatalyst, which can complete overall water splitting at a cell voltage of 1.47 V with 10 mA cm , suggesting a promising combination of the same material for efficient overall water splitting device. The cell voltage of 1.47 V, to our knowledge, is among the lowest values of the published support catalysts for electrocatalytic water splitting up to now.
开发环保且高效的水分解催化剂对于清洁能源的转化和利用过程具有重要意义。通过可控的水热和电沉积方法,首次设计了具有丰富氧空位的异质 CuCo S@Ni(OH)纳米棒阵列。特殊的分级结构的协同作用和开放结构以及丰富的氧空位提供了更多的表面反应中心,这可以促进电子转移速率并降低中间物种的活化能。在碱性条件下,CuCo S@Ni(OH) -20 min 纳米棒阵列被认为是质子还原的一种优异且坚固的电催化剂,在 10 mA cm -2时的过电位仅为 117 mV。CuCo S@Ni(OH) -20 min 异质结构电极对于水氧化反应也很稳定和坚固,仅需 250 mV 的过电位即可获得 100 mA cm -2。因此,设计了一种使用 CuCo S@Ni(OH) -20 min 纳米棒阵列作为双功能电催化剂的碱性电解槽,在 1.47 V 的电池电压下即可完成整体水分解,在 10 mA cm -2时的电流密度下达到 1.47 V,这表明同一种材料有望用于高效整体水分解装置。据我们所知,1.47 V 的电池电压是迄今为止用于电催化水分解的已发表的支持催化剂中最低的电压值之一。