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ATOMIC COBALT ON NITROGEN-DOPED GRAPHENE FOR HYDROGEN GENERATION

机译:氢气产生氮掺杂石墨烯原子钴

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Reduction of water to hydrogen through electrocatalysis holds great promise for clean energy, but its large-scale application relies on the development of inexpensive and efficient catalysts to replace precious platinum catalysts. Here, we report a new type of electrocatalyst for hydrogen generation based on very small amounts of cobalt dispersed as individual atoms on nitrogen-doped graphene. This catalyst is robust and exceptionally active in aqueous media with very low overpotentials (30 millivolts). A variety of analytical techniques and electrochemical measurements suggest that the catalytically active sites are associated with the metal centers coordinated to nitrogen. This unusual atomic constitution of supported metals is suggestive of a new approach to preparing extremely efficient single-atom catalysts.
机译:通过电催化将水还原为氢气,对清洁能量具有很大的承担,但其大规模应用依赖于廉价和有效催化剂的开发以取代珍贵的铂催化剂。这里,我们报告了一种基于在氮掺杂石墨烯上作为单独原子分散的非常少量的氢气产生的新型电催化剂。该催化剂在具有非常低的过电(30毫伏)的水性介质中具有稳健和异常活性的。各种分析技术和电化学测量表明,催化活性位点与配位氮的金属中心相关。这种不寻常的支持金属构造是提示一种新方法来制备极其有效的单原子催化剂。

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