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原位形成的纳米镍钴羟基氧化物使水氧化电催化剂在高电流密度下具有耐久性。

In Situ Formation of Nano Ni-Co Oxyhydroxide Enables Water Oxidation Electrocatalysts Durable at High Current Densities.

作者信息

Abed Jehad, Ahmadi Shideh, Laverdure Laura, Abdellah Ahmed, O'Brien Colin P, Cole Kevin, Sobrinho Pedro, Sinton David, Higgins Drew, Mosey Nicholas J, Thorpe Steven J, Sargent Edward H

机构信息

Department of Materials Science and Engineering, University of Toronto, 184 College Street, Toronto, Ontario, M5S 3E4, Canada.

Department of Electrical and Computer Engineering, University of Toronto, 35 St George Street, Toronto, Ontario, M5S 1A4, Canada.

出版信息

Adv Mater. 2021 Nov;33(45):e2103812. doi: 10.1002/adma.202103812. Epub 2021 Sep 20.

Abstract

The oxygen evolution reaction (OER) limits the energy efficiency of electrocatalytic systems due to the high overpotential symptomatic of poor reaction kinetics; this problem worsens over time if the performance of the OER electrocatalyst diminishes during operation. Here, a novel synthesis of nanocrystalline Ni-Co-Se using ball milling at cryogenic temperature is reported. It is discovered that, by anodizing the Ni-Co-Se structure during OER, Se ions leach out of the original structure, allowing water molecules to hydrate Ni and Co defective sites, and the nanoparticles to evolve into an active Ni-Co oxyhydroxide. This transformation is observed using operando X-ray absorption spectroscopy, with the findings confirmed using density functional theory calculations. The resulting electrocatalyst exhibits an overpotential of 279 mV at 0.5 A cm and 329 mV at 1 A cm and sustained performance for 500 h. This is achieved using low mass loadings (0.36 mg cm ) of cobalt. Incorporating the electrocatalyst in an anion exchange membrane water electrolyzer yields a current density of 1 A cm at 1.75 V for 95 h without decay in performance. When the electrocatalyst is integrated into a CO -to-ethylene electrolyzer, a record-setting full cell voltage of 3 V at current density 1 A cm is achieved.

摘要

析氧反应(OER)限制了电催化系统的能量效率,这是由于反应动力学较差导致过电位较高;如果OER电催化剂在运行过程中性能下降,随着时间的推移,这个问题会恶化。在此,报道了一种在低温下通过球磨合成纳米晶Ni-Co-Se的新方法。研究发现,在OER过程中对Ni-Co-Se结构进行阳极氧化时,Se离子会从原始结构中浸出,使水分子使Ni和Co缺陷位点水合,纳米颗粒演变成活性Ni-Co羟基氧化物。使用原位X射线吸收光谱观察到这种转变,研究结果通过密度泛函理论计算得到证实。所得的电催化剂在0.5 A cm时过电位为279 mV,在1 A cm时过电位为329 mV,并具有500小时的持续性能。这是使用低质量负载(0.36 mg cm)的钴实现的。将该电催化剂应用于阴离子交换膜水电解槽中,在1.75 V下可实现1 A cm的电流密度,持续95小时且性能无衰减。当将该电催化剂集成到CO转化为乙烯的电解槽中时,在电流密度为1 A cm时可实现创纪录的3 V全电池电压。

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