Controlled formation of CoOOH/Co(III)-MOF active phase for boosting electrocatalytic alkaline water oxidation

IF 5.2 2区 化学 Q1 CHEMISTRY, APPLIED Catalysis Today Pub Date : 2024-09-14 DOI:10.1016/j.cattod.2024.115049
Inmaculada Márquez , Silvia Gutiérrez-Tarriño , Arismendy Portorreal-Bottier , Jose Luis del Río-Rodríguez , Sergio Hernández-Salvador , Juan José Calvente , Pascual Oña-Burgos , José Luis Olloqui-Sariego
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Abstract

Surface reconstituted metal-organic frameworks (MOFs) offer appealing properties for electrocatalysis due to their unique structural and compositional advantages. In this work, a controlled potential-induced reconstruction of a two-dimensional cobalt metal-organic framework for boosting oxygen evolution reaction in alkaline media is reported. The current MOF is shown to undergo a partial structural transformation that generates a heterogeneous system, where the original MOF coexists with an oxyhydroxide phase. In fact, the potential-induced stabilization of Co(III) metal centers in the MOF is crucial for delaying its full degradation in alkaline media. This partial retention of the Co(III)MOF phase in the so-derived heterogeneous catalyst has been demonstrated to be decisive for boosting the alkaline electrocatalytic oxygen evolution reaction (OER), displaying superior OER activity in terms of both thermodynamic and kinetic merits compared to the benchmark IrO2 and RuO2 electrocatalysts and the prototypical cobalt (oxy)hydroxides, with a Tafel slope of 52 mV dec−1 and a turnover frequency (TOF) of 6.8 s−1 at 450 mV. Remarkably, the generated final product is stable, exhibiting high robustness and long durability for long-term OER electrolysis. This work provides new insight into the impact of the reconstruction of a MOF for alkaline OER under typical electrochemical conditions, which ultimately benefits the rational design of MOF-based catalysts with high electrocatalytic activity for oxidation reactions.

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受控形成 CoOOH/Co(III)-MOF 活性相,促进碱性水的电催化氧化
表面重构金属有机框架(MOFs)因其独特的结构和组成优势,为电催化提供了极具吸引力的特性。在这项研究中,报告了一种受控电位诱导的二维钴金属有机框架重构方法,用于促进碱性介质中的氧进化反应。研究表明,当前的 MOF 经历了部分结构转变,产生了一个异质体系,其中原始 MOF 与氢氧化物相共存。事实上,MOF 中 Co(III)金属中心的电位诱导稳定对于延迟其在碱性介质中的完全降解至关重要。与基准的 IrO2 和 RuO2 电催化剂以及原型钴(氧)氢氧化物相比,Co(III)MOF 相在热力学和动力学方面都显示出更优越的 OER 活性,在 450 mV 时的塔菲尔斜率为 52 mV dec-1,翻转频率(TOF)为 6.8 s-1。值得注意的是,生成的最终产品非常稳定,在长期 OER 电解中表现出很高的稳健性和持久性。这项工作提供了在典型电化学条件下重构 MOF 对碱性 OER 的影响的新见解,最终有利于合理设计具有高电催化活性的基于 MOF 的氧化反应催化剂。
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来源期刊
Catalysis Today
Catalysis Today 化学-工程:化工
CiteScore
11.50
自引率
3.80%
发文量
573
审稿时长
2.9 months
期刊介绍: Catalysis Today focuses on the rapid publication of original invited papers devoted to currently important topics in catalysis and related subjects. The journal only publishes special issues (Proposing a Catalysis Today Special Issue), each of which is supervised by Guest Editors who recruit individual papers and oversee the peer review process. Catalysis Today offers researchers in the field of catalysis in-depth overviews of topical issues. Both fundamental and applied aspects of catalysis are covered. Subjects such as catalysis of immobilized organometallic and biocatalytic systems are welcome. Subjects related to catalysis such as experimental techniques, adsorption, process technology, synthesis, in situ characterization, computational, theoretical modeling, imaging and others are included if there is a clear relationship to catalysis.
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