Gong Zhi-Jiang, Hu Zhuo-Cheng, Bai Zi-Jian, Yu Xiang-An, Liu Zhiliang, Wang Yan-Qin
Inner Mongolia Key Laboratory of Chemistry and Physics of Rare Earth Materials, College of Chemistry and Chemical Engineering, Inner Mongolia University, 235 West University Street, Hohhot 010021, P. R. China.
Inorg Chem. 2023 Aug 21;62(33):13338-13347. doi: 10.1021/acs.inorgchem.3c01639. Epub 2023 Aug 10.
Oxygen evolution reaction (OER) is a limiting reaction for highly efficient water electrolysis. Thus, the development of cost-effective and highly efficient OER catalysts is the key to large-scale water electrolysis for hydrogen production. Herein, by using an interfacial engineering strategy, a unique nanoflower-like FeNi(PO)/NiP/NF heterostructure with abundant heterogeneous interfaces is successfully fabricated. The catalyst exhibits excellent OER catalytic activity in alkaline fresh water and alkaline natural seawater at high current densities, which only, respectively, requires overpotentials of 318 and 367 mV to drive 1000 mA cm in fresh water and natural seawater both containing 1 M KOH. Furthermore, FeNi(PO)/NiP/NF demonstrates excellent durability, which can basically remain stable for 80 h during the electrocatalytic OER processes, respectively, in alkaline fresh water and natural seawater. This work provides a new construction strategy for designing highly efficient electrocatalysts for OER at high current densities both in alkaline fresh water and in natural seawater.
析氧反应(OER)是高效水电解的限制反应。因此,开发具有成本效益且高效的OER催化剂是大规模水电解制氢的关键。在此,通过采用界面工程策略,成功制备了一种具有丰富异质界面的独特纳米花状FeNi(PO)/NiP/NF异质结构。该催化剂在碱性淡水和碱性天然海水中于高电流密度下表现出优异的OER催化活性,在均含有1 M KOH的淡水和天然海水中驱动1000 mA cm分别仅需要318和367 mV的过电位。此外,FeNi(PO)/NiP/NF表现出优异的耐久性,在碱性淡水和天然海水中的电催化OER过程中分别可基本保持稳定80 h。这项工作为设计在碱性淡水和天然海水中高电流密度下用于OER的高效电催化剂提供了一种新的构建策略。