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锚定在碳布上用于高效氧氧化反应的CoMoO纳米结构的形貌控制合成。

Morphology-controlled synthesis of CoMoO nanoarchitectures anchored on carbon cloth for high-efficiency oxygen oxidation reaction.

作者信息

Wang Feifei, Zhao Juan, Tian Wen, Hu Zhufeng, Lv Xingbin, Zhang Hualian, Yue Hairong, Zhang Yuxin, Ji Junyi, Jiang Wei

机构信息

School of Chemical Engineering, Sichuan University Chengdu 610065 P. R. China

College of Material Science and Engineering, Chongqing University Chongqing 400044 P. R. China.

出版信息

RSC Adv. 2019 Jan 11;9(3):1562-1569. doi: 10.1039/c8ra09484e. eCollection 2019 Jan 9.

Abstract

Novel CoMoO nanoarrays with different morphologies are anchored on a carbon cloth a simple hydrothermal method by adjusting the Co/Mo atom ratio. The growth and tight immobilization of the CoMoO nanocomposite on the carbon cloth can facilitate the electrolyte infiltration and electrons transfer rate at the contact interface. Therefore, the free-standing electrode of CoMoO/carbon cloth with interconnected nanosheets shows superior electrocatalytic activity, and the overpotential of 286 mV is obtained at 15 mA cm in alkaline solution. Moreover, the catalyst also exhibits a small Tafel slope of 67 mV dec as well as good stability. The relationship between the active material morphology, contact interface and the electrocatalytic performance is also discussed. As the carbon cloth is commercially available, this simple but effective structural controlling method demonstrates a new large-scale practical electrode fabrication technique for high performance OER electrodes and large-scale water splitting.

摘要

通过调节钴/钼原子比,采用简单的水热法将具有不同形貌的新型钴钼氧化物纳米阵列锚定在碳布上。钴钼氧化物纳米复合材料在碳布上的生长和紧密固定可以促进电解质渗透以及接触界面处的电子转移速率。因此,具有相互连接的纳米片的钴钼氧化物/碳布自立式电极表现出优异的电催化活性,在碱性溶液中,当电流密度为15 mA/cm²时,过电位为286 mV。此外,该催化剂还具有67 mV/dec的小塔菲尔斜率以及良好的稳定性。还讨论了活性材料形貌、接触界面与电催化性能之间的关系。由于碳布是市售的,这种简单而有效的结构控制方法展示了一种用于高性能析氧反应电极和大规模水分解的新型大规模实用电极制造技术。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c4b8/9059564/5a3fdac2db55/c8ra09484e-f1.jpg

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