Liao Xianping, Huang Zinan, Zhang Wenbiao, Meng Yuying, Yang Lichun, Gao Qingsheng
College of Chemistry and Materials Science, Jinan University, Guangzhou 510632, China.
College of Chemistry and Materials Science, and Institution Advance Wear & Corrosion Resistance & Functional Material, Jinan University, Guangzhou 510632, China.
J Colloid Interface Sci. 2024 Nov 15;674:1048-1057. doi: 10.1016/j.jcis.2024.07.074. Epub 2024 Jul 9.
Understanding and utilizing the dynamic changes of electrocatalysts under working conditions are important for advancing the sustainable hydrogen production. Here, we for the first time report that Cr-doping can promote the in situ reconstruction of a self-supported NiN electrocatalyst (Cr-NiN/NF) during oxygen and hydrogen evolution reactions (OER and HER), and therefore improve the electrocatalytic water splitting performance. As identified by in situ measurements and theoretical calculations, Cr-doping enhances OH adsorption during OER at anode and thereby boosts the transformation of NiN pre-catalysts to defect-rich nickel oxyhydroxide (NiOOH) active species. Meanwhile, it facilitates the generation of NiN/Ni(OH) at cathodes due to effective HO activation, leading to the fast HER kinetics on the NiN/Ni(OH) interfaces. Notably, the optimal Cr-NiN/NF displays good OER and HER performance in 1.0 M KOH electrolytes, with low overpotentials of 316 and 188 mV to achieve the current density of ± 100 mA cm, respectively. Benefiting from its bi-functionality and self-supporting property, an alkaline electrolyzer equipped with Cr-NiN/NF as both anode and cathode affords a small voltage of 1.72 V at 100 mA cm, along with 100 h operation stability. Elucidating that Cr-doping can boost in situ reconfiguration and consequently the electrocatalytic activity, this work would shed new light on the rational design and synthesis of electrocatalysts via directional reconstructions.
了解和利用工作条件下电催化剂的动态变化对于推动可持续制氢至关重要。在此,我们首次报道Cr掺杂可促进自支撑NiN电催化剂(Cr-NiN/NF)在析氧反应和析氢反应(OER和HER)过程中的原位重构,从而提高电催化水分解性能。通过原位测量和理论计算确定,Cr掺杂增强了阳极OER过程中的OH吸附,从而促进了NiN预催化剂向富含缺陷的羟基氧化镍(NiOOH)活性物种的转变。同时,由于有效的H₂O活化,它促进了阴极处NiN/Ni(OH)₂的生成,导致NiN/Ni(OH)₂界面上快速的HER动力学。值得注意的是,最佳的Cr-NiN/NF在1.0 M KOH电解液中表现出良好的OER和HER性能,分别具有316和188 mV的低过电位以实现±100 mA cm⁻²的电流密度。受益于其双功能和自支撑特性,配备Cr-NiN/NF作为阳极和阴极的碱性电解槽在100 mA cm⁻²时提供1.72 V的小电压以及100 h的运行稳定性。这项工作阐明了Cr掺杂可以促进原位重构并因此提高电催化活性,将为通过定向重构合理设计和合成电催化剂提供新的思路。