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首页> 外文期刊>Electrochimica Acta >Hollow petal-like Co3O4 nanoflakes as bifunctional electrocatalysts through template-free protocol and structural controlled kinetics in gas evolution
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Hollow petal-like Co3O4 nanoflakes as bifunctional electrocatalysts through template-free protocol and structural controlled kinetics in gas evolution

机译:空心花瓣状CO3O4纳米薄片作为双官能电催化剂,通过模板的方案和气体进化中的结构控制动力学

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The morphology and porosity of electrocatalysts play essential roles on gas evolution reactions, such as OER and HER in water splitting. Therefore, rational design of highly efficient multifunction electrocatalysts with optimized nanostructures is of great importance for sustainable energy conversion processes. Herein, hollow petal-like Co3O4 nanoflakes could be readily available through calcining the corresponding MOFs(Metal-organic frameworks) nanoflower precursor, which could be controllable synthesized by a novel template-free protocol. Through modulating reaction conditions, the morphology and porosity of the catalysts could be controlled, which could directly influence on the catalytic activities of OER and HER. The super-hydrophilic hollow petal-like Co3O4 nanoflakes effectively facilitate mass transfer and ease gas bubbling, which contribute to a promoted bifunctional electrocatalytic activity for both HER and OER, as well as overall water splitting (A stable 10 mA cm(-1) water-splitting current can be reached by just applying 1.67 V, which is comparable to other recently reported catalysts in alkaline media). The hollow Co3O4 microflowers that reported here confirm the significance of structural features effect on electrocatalyst performance, which will open up a new approach to design high-performance electrode materials for gas evolution reactions. (C) 2019 Elsevier Ltd. All rights reserved.
机译:电催化剂的形态和孔隙率在煤气演化反应中发挥基本作用,例如乌尔和她在水分裂中。因此,具有优化纳米结构的高效多功能电催化剂的合理设计对于可持续的能量转换过程具有重要意义。在此,可以通过煅烧相应的MOF(金属 - 有机框架)纳米闪光前体,容易地获得中空花瓣状CO3O4纳米薄片,其可以通过新的无模板方案可控合成。通过调节反应条件,可以控制催化剂的形态和孔隙率,这可能直接影响伊尔和她的催化活性。超亲水性中空花瓣状CO3O4纳米薄片有效地促进了传质和缓解气体鼓泡,这有助于她和伊尔的促进的双官能电催化活性,以及​​整体水分裂(稳定的10 mA cm(-1)水只需施加1.67 V即可达到隔离电流,其与碱性介质中最近报道的其他催化剂相当)。据报道的空心CO3O4微射线证实了结构特征对电催化剂性能影响的重要性,这将开辟一种设计用于气体进化反应的高性能电极材料的新方法。 (c)2019 Elsevier Ltd.保留所有权利。

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