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首页> 外文期刊>Angewandte Chemie >Cobalt-Embedded Nitrogen-Rich Carbon Nanotubes Efficiently Catalyze Hydrogen Evolution Reaction at All pH Values
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Cobalt-Embedded Nitrogen-Rich Carbon Nanotubes Efficiently Catalyze Hydrogen Evolution Reaction at All pH Values

机译:钴嵌入的富氮碳纳米管在所有pH值下均能有效催化产氢反应

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摘要

Despite being technically possible, splitting water to generate hydrogen is still practically unfeasible due mainly to the lack of sustainable and efficient catalysts for the half reactions involved. Herein we report the synthesis of cobalt-embedded nitrogen-rich carbon nanotubes (NRCNTs) that 1) can efficiently electrocatalyze the hydrogen evolution reaction (HER) with activities close to that of Pt and 2) function well under acidic, neutral or basic media alike, allowing them to be coupled with the best available oxygen-evolving catalysts— which also play crucial roles in the overall water-splitting reaction. The materials are synthesized by a simple, easily scalable synthetic route involving thermal treatment of Co~(2+)-embedded graphitic carbon nitride derived from inexpensive starting materials (dicyandiamide and CoCl2). The materials' efficient catalytic activity is mainly attributed to their nitrogen dopants and concomitant structural defects.
机译:尽管在技术上是可行的,但主要由于缺乏对所涉及的半反应的可持续且有效的催化剂,将水分解以产生氢气实际上仍不可行。本文中我们报道了钴嵌入的富氮碳纳米管(NRCNTs)的合成,该合成物可以有效地电催化析氢反应(HER),其活性接近Pt的活性,并且2)在酸性,中性或碱性介质下均能很好地发挥作用,使其与最佳的析氧催化剂结合使用-在整个水分解反应中也起着至关重要的作用。该材料是通过简单,易于扩展的合成路线合成的,该合成路线涉及对衍生自廉价原材料(双氰胺和CoCl2)的Co〜(2+)嵌入的石墨碳氮化物进行热处理。该材料的有效催化活性主要归因于它们的氮掺杂剂和伴随的结构缺陷。

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