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源自金属有机框架材料的CuCoO纳米晶体及其析氧反应催化性能

Nanocrystals of CuCoO derived from MOFs and their catalytic performance for the oxygen evolution reaction.

作者信息

Gao Han, Liu Xing, Han Na, Shi Lifen, Wang Liang, Mi Yue, Bao Xiao-Qing, Bai Jilin, Li Hong, Xiong Dehua

机构信息

State Key Laboratory of Silicate Materials for Architectures, Wuhan University of Technology, Wuhan 430070, P. R. China.

State Key Laboratory of Advanced Technology for Float Glass, CNBM Research Institute for Advanced Glass Materials Group Co., Ltd., Bengbu 233000, P. R. China.

出版信息

Dalton Trans. 2022 Aug 2;51(30):11536-11546. doi: 10.1039/d2dt01281b.

Abstract

In this work, two different solvothermal synthesis routes were employed to prepare MOF-derived CuCoO (CCO) nanocrystals for electrocatalytic oxygen evolution reaction (OER) application. The effects of the reductants (ethylene glycol, methanol, ethanol, and isopropanol), NaOH addition, the reactants, and the reaction temperature on the structure and morphology of the reaction product were investigated. In the first route, Cu-BTC derived CCO (CCO1) nanocrystals with a size of ∼214 nm and a specific surface area of 4.93 m g were prepared by using Cu-BTC and Co(NO)·6HO as the Cu and Co source, respectively. In the second route, ZIF-67 derived CCO (CCO2) nanocrystals with a size of ∼146 nm and a specific surface area of 11.69 m g were prepared by using ZIF-67 and Cu(NO)·3HO as the Co and Cu source, respectively. Moreover, the OER performances of Ni foam supported CCO1 (Ni@CCO1) and CCO2 (Ni@CCO2) electrodes were evaluated in 1.0 M KOH solution. Ni@CCO2 demonstrates a better OER catalytic performance with a lower overpotential of 394.5 mV at 10 mA cm, a smaller Tafel slope of 82.6 mV dec, and long-term durability, which are superior to those of some previously reported delafossite oxide or perovskite oxide catalysts. This work reveals the preparation method and application potential of CCO electrocatalysts by using Cu-BTC/ZIF-67 as the precursor, providing a new approach for the preparation of delafossite oxide CCO and the enhancement of their OER performances.

摘要

在本工作中,采用了两种不同的溶剂热合成路线来制备用于电催化析氧反应(OER)的金属有机框架衍生的CuCoO(CCO)纳米晶体。研究了还原剂(乙二醇、甲醇、乙醇和异丙醇)、NaOH添加量、反应物以及反应温度对反应产物结构和形貌的影响。在第一条路线中,分别以Cu-BTC和Co(NO₃)₂·6H₂O作为Cu和Co源,制备了尺寸约为214 nm、比表面积为4.93 m²/g的Cu-BTC衍生CCO(CCO1)纳米晶体。在第二条路线中,分别以ZIF-67和Cu(NO₃)₂·3H₂O作为Co和Cu源,制备了尺寸约为146 nm、比表面积为11.69 m²/g的ZIF-67衍生CCO(CCO2)纳米晶体。此外,在1.0 M KOH溶液中评估了泡沫镍负载的CCO1(Ni@CCO1)和CCO2(Ni@CCO2)电极的OER性能。Ni@CCO2表现出更好的OER催化性能,在10 mA/cm²时过电位较低,为394.5 mV,塔菲尔斜率较小,为82.6 mV/dec,并且具有长期耐久性,优于一些先前报道的铜铁矿氧化物或钙钛矿氧化物催化剂。这项工作揭示了以Cu-BTC/ZIF-67为前驱体制备CCO电催化剂的方法和应用潜力,为制备铜铁矿氧化物CCO及其OER性能的提升提供了一种新途径。

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