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首页> 外文期刊>Electrochimica Acta >Cobalt-boron-oxide supported on N, P dual-doped carbon nanosheets as the trifunctional electrocatalyst and its application in rechargeable Zn-air battery and overall water-electrolysis
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Cobalt-boron-oxide supported on N, P dual-doped carbon nanosheets as the trifunctional electrocatalyst and its application in rechargeable Zn-air battery and overall water-electrolysis

机译:钴 - 氧化钴负载在N,P双掺杂碳纳米片作为三官能电池的应用及其在可充电Zn-Air电池中的应用和整体水电解

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The development of trifunctional catalysts integrated with the catalytic activities of oxygen reduction reaction (ORR), oxygen evolution reaction (OER) and hydrogen evolution reaction (HER) remains an important scientific challenge. The obvious preparation strategy is to load metal-based compounds on the non-metal element doped carbon catalyst. A compact interface between heterogeneous materials is the key to obtain efficient performance. Herein, the cobalt-boron-oxide nanosheets were embedded into the N, P dual-doped carbon nanosheets, and a compact composite catalyst (Co-B-O/NPC) was constructed using boron as a medium. The Co-B-O/NPC-50% catalyst exhibits the ORR catalytic activity surpassing Pt/C catalyst, the OER catalytic activity exceeding RuO2, and the excellent catalytic activity of HER. These three catalytic performances originated from synergy also exhibit good stabilities. The rechargeable zinc-air battery using Co-B-O/NPC-50% as the electrocatalyst exhibits the power density of 110.7 mW/cm(2) and a stable charge-discharge cycling of more than 60 h. The overall water-splitting electrolyzer using Co-B-O/NPC as sole catalyst also exhibits excellent performance and stability. A complex energy-system that combines Zn-air battery, illumination and water-splitting was built due to trifunctional characteristics. This work not only presents a novel preparation strategy, but also can deepen the understanding of the structure-activity relationship of trifunctional electro-catalysts. (C) 2019 Elsevier Ltd. All rights reserved.
机译:三官能催化剂的开发与氧还原反应(ORR),析氧反应(OER)和析氢反应的催化活性集成(HER)仍然是一个重要的科学挑战。明显的制备策略是在非金属元素掺杂的碳催化剂负载金属系化合物。异质材料之间的界面紧凑是获得高效率性能的关键。这里,钴 - 硼氧化物纳米片被嵌入到N,P双掺碳纳米片,和紧凑复合催化剂(联合-B-O / NPC)使用硼作为介质构建。共同-B-O / NPC-50%的催化剂表现出ORR催化活性超过Pt / C催化剂中,OER催化活性超过的RuO 2和HER的优异的催化活性。这三个催化性能来源于协同效应也表现出良好的稳定性。以Co-B-O / NPC-50%作为电极催化剂的可再充电的锌 - 空气电池表现出110.7毫瓦/平方厘米(2)和超过60小时稳定的充放电循环的功率密度。整体水分解电解槽以Co-B-O / NPC作为唯一的催化剂也显示出优异的性能和稳定性。一个复杂的能量系统,结合锌 - 空气电池,照明和水分解建由于三官能特性。这项工作不仅提出了一种新的准备策略,但也可以加深三官能电催化剂的构效关系的理解。 (c)2019 Elsevier Ltd.保留所有权利。

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