Du Lijie, Xiong Hu, Lu Hongcheng, Yang Li-Ming, Liao Rong-Zhen, Xia Bao Yu, You Bo
Key Laboratory of Material Chemistry for Energy Conversion and Storage, Ministry of Education, Hubei Key Laboratory of Material Chemistry and Service Failure, School of Chemistry and Chemical Engineering Huazhong University of Science and Technology (HUST) Wuhan Hubei China.
Exploration (Beijing). 2022 Nov 24;2(6):20220024. doi: 10.1002/EXP.20220024. eCollection 2022 Dec.
The design and production of active, durable, and nonprecious electrocatalysts toward alkaline hydrogen oxidation and evolution reactions (HOR/HER) are extremely appealing for the implementation of hydrogen economy, but remain challenging. Here, we report a facile electric shock synthesis of an efficient, stable, and inexpensive NiCoCuMoW multi-element alloy on Ni foam (NiCoCuMoW) as a bifunctional electrocatalyst for both HOR and HER. For the HOR, the current density of NiCoCuMoW could reach ∼11.2 mA cm when the overpotential is 100 mV, higher than that for commercial Pt/C (∼7.2 mA cm) and control alloy samples with less elements, along with superior CO tolerance. Moreover, for the HER, the overpotential at 10 mA cm for NiCoCuMoW is only 21 mV, along with a Tafel slope of low to 63.7 mV dec, rivaling the commercial Pt/C as well (35 mV and 109.7 mV dec). Density functional theory calculations indicate that alloying Ni, Co, Cu, Mo, and W can tune the electronic structure of individual metals and provide multiple active sites to optimize the hydrogen and hydroxyl intermediates adsorption, collaboratively resulting in enhanced electrocatalytic activity.
设计并制备出用于碱性氢氧化和析氢反应(HOR/HER)的活性高、耐久性好且非贵金属的电催化剂,对于氢经济的实现极具吸引力,但仍具有挑战性。在此,我们报道了一种简便的电击合成法,在泡沫镍上制备出一种高效、稳定且廉价的NiCoCuMoW多元素合金(NiCoCuMoW)作为用于HOR和HER的双功能电催化剂。对于HOR,当过电位为100 mV时,NiCoCuMoW的电流密度可达11.2 mA cm,高于商业Pt/C(7.2 mA cm)以及元素较少的对照合金样品,且具有优异的CO耐受性。此外,对于HER,NiCoCuMoW在10 mA cm时的过电位仅为21 mV,塔菲尔斜率低至63.7 mV dec,也可与商业Pt/C相媲美(分别为35 mV和109.7 mV dec)。密度泛函理论计算表明,将Ni、Co、Cu、Mo和W合金化可调节各金属的电子结构,并提供多个活性位点以优化氢和羟基中间体的吸附,协同提高电催化活性。