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Dealloying-directed synthesis of efficient mesoporous CoFe-based catalysts towards the oxygen evolution reaction and overall water splitting

机译:Dealloying-directed合成效率介孔CoFe-based催化剂对氧进化反应和整体水分裂

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摘要

It is a great challenge to design highly active, stable and low-cost catalysts for electrochemically splitting water to realize the clean energy generation and renewable energy storage. Herein, a facile one-step dealloying strategy was proposed to synthesize mesoporous CoFe-based oxides and layered double hydroxides (LDHs). Benefitting from the fast mass transfer and more active sites caused by the open mesoporous structure, the CoFe-based materials exhibit excellent electrocatalytic activities and stability towards the oxygen evolution reaction (OER) in an alkaline electrolyte (1 M KOH). The CoFe-LDH catalyst only needs an overpotential of 0.286 V to achieve 10 mA cm(-2), and a small Tafel slope of 45 mV dec(-1) for the OER. Moreover, an alkaline electrolyzer was constructed with the CoFe-LDH as both the anode and cathode. The electrolyzer delivers a current density of 10 mA cm (2) at a voltage of 1.69 V toward overall water splitting in the 1 M KOH solution.
机译:这是一个巨大的挑战设计高度活跃,稳定和低成本的催化剂电化学原理实现分裂水清洁能源发电和可再生能源存储。策略,提出了合成介孔CoFe-based氧化物和水滑石(类)。和更积极的网站开放造成的介孔结构,CoFe-based材料表现出优秀的electrocatalytic活动和稳定的氧发生反应(超过)碱性电解质(1 M KOH)。只需要一个过电压CoFe-LDH催化剂0.286 V马达到10厘米(2),和一个小塔菲尔坡45 mV OER 12月(1)。此外,一个碱性电解槽构造与CoFe-LDH阳极和阴极。马10厘米(2)密度在1.69 V的电压对整体水1 M KOH的分裂解决方案。

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