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用于促进析氧反应的三明治状分级结构电催化剂中表面自重构诱导产生的富氧空位

Rich Oxygen Vacancies Induced by Surface Self-Reconstruction in Sandwich-like Hierarchical Structured Electrocatalyst for Boosting Oxygen Evolution Reaction.

作者信息

San Xiaoguang, Wu Wanmeng, Li Xueying, Zhang Lei, Qi Jian, Meng Dan

机构信息

College of Chemical Engineering, Shenyang University of Chemical Technology, Shenyang 110142, China.

State Key Laboratory of Biochemical Engineering, Institute of Process Engineering, Chinese Academy of Sciences, Beijing 100190, China.

出版信息

Molecules. 2025 Jun 17;30(12):2632. doi: 10.3390/molecules30122632.

Abstract

The oxygen evolution reaction (OER) is pivotal in hydrogen production via water electrolysis, yet its sluggish kinetics, stemming from the four-electron transfer process, remain a major obstacle, with overpotential reduction being critical for enhancing efficiency. This work addresses this challenge by developing a novel approach to stabilize and activate non-precious metal catalysts for OER. Specifically, we synthesized a three-dimensional flake NiFe-LDH/ZIF-L composite catalyst on a flexible nickel foam (NF) substrate through a room temperature soaking and hydrothermal method, leveraging the mesoporous structure of ZIF-L to increase the specific surface area and optimizing electron transfer pathways via interfacial regulation. Continuous linear sweep voltammetry (LSV) scanning induced structural self-reconstruction, forming highly active NiOOH species enriched with oxygen vacancies, which significantly boosted catalytic performance. Experimental results demonstrate an overpotential of only 221 mV at 10 mA cm and a Tafel slope of 56.3 mV dec, alongside remarkable stability, attributed to the catalyst's hierarchical nanostructure that accelerates mass diffusion and charge transfer. The innovation lies in the synergistic effect of the mesoporous ZIF-L structure and interfacial regulation, which collectively enhance the catalyst's activity and durability, offering a promising strategy for advancing large-scale water electrolysis hydrogen production technology.

摘要

析氧反应(OER)在通过水电解制氢过程中起着关键作用,然而,由于四电子转移过程导致其动力学缓慢,仍然是一个主要障碍,降低过电位对于提高效率至关重要。这项工作通过开发一种稳定和激活用于OER的非贵金属催化剂的新方法来应对这一挑战。具体而言,我们通过室温浸泡和水热法在柔性泡沫镍(NF)基底上合成了三维片状NiFe-LDH/ZIF-L复合催化剂,利用ZIF-L的介孔结构增加比表面积,并通过界面调控优化电子转移途径。连续线性扫描伏安法(LSV)扫描诱导结构自重构,形成富含氧空位的高活性NiOOH物种,显著提高了催化性能。实验结果表明,在10 mA cm时过电位仅为221 mV,塔菲尔斜率为56.3 mV dec,同时具有出色的稳定性,这归因于催化剂的分级纳米结构加速了质量扩散和电荷转移。创新之处在于介孔ZIF-L结构和界面调控的协同效应,共同提高了催化剂的活性和耐久性,为推进大规模水电解制氢技术提供了一种有前景的策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f6d8/12196320/88b63a531a5a/molecules-30-02632-g001.jpg

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