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Multifunctional catalysts with high catalytic activities: Flower-like Co_9S_8 microballs assembled with weak crystalline pea pod-shaped nanowires

机译:具有高催化活性的多功能催化剂:花状Co_9S_8微球与弱结晶豌豆荚状纳米线组装在一起

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The flower-like Co9S8 microballs assembled with weak crystalline pea pod-shaped nano wires were fabricated via a one-pot hydrothermal reaction. The high-resolution TEM image of pea pod-shaped nanowires revealed a weak crystalline structure. Some regions were amorphous and some regions showed well-resolved lattice fringe. Because flower-like Co9S8 microballs possessed the more catalytic active sites of the weak crystalline character and the fast electron transfer along the nanowires, they would be promising catalysts for reduction of I-3(-) in DSSCs and electrochemical water splitting. As the counter electrode catalysts for I-3(-) reduction, DSSCs based on the Co9S8 microballs got a high photoelectrical conversion efficiency of 7.0%, which was comparable with DSSCs based on standard platinum (7.48%). As the electrocatalysts for hydrogen evolution reaction, the Co9S8 microball electrode possessed an overpotential of 173.8 and 191.3 mV at the current density of 10 mA cm(-2) in acid and alkaline solution, respectively. Also, it displayed a superior catalytic activity for oxygen evolution reaction. The stability tests indicated that this microball could possess the high catalytic activity with long time. This kind of Co9S8 microballs assembled with weak crystalline pea pod-shaped nanowires paved a new way to low-cost catalyst for I-3(-) reduction and water splitting. (C) 2018 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:通过一锅水热反应制备了由弱结晶豌豆荚状纳米线组装而成的花状Co9S8微球。豌豆荚状纳米线的高分辨率TEM图像显示出较弱的晶体结构。一些区域是无定形的,而一些区域显示出分辨良好的晶格条纹。由于花状Co9S8微球具有更多的催化活性位点,具有较弱的结晶特性和沿纳米线的快速电子转移,因此它们将成为减少DSSC中I-3(-)和电化学水分解的催化剂。作为用于I-3(-)还原的对电极催化剂,基于Co9S8微球的DSSC的光电转换效率高达7.0%,与基于标准铂的DSSC(7.48%)相当。作为制氢反应的电催化剂,Co9S8微球电极在酸性和碱性溶液中的电流密度分别为10 mA cm(-2)时分别具有173.8和191.3 mV的过电势。而且,它对氧释放反应显示出优异的催化活性。稳定性试验表明,该微球可以长时间保持较高的催化活性。这种由弱结晶豌豆荚状纳米线组装而成的Co9S8微球为I-3(-)还原和水分解的低成本催化剂开辟了一条新途径。 (C)2018氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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