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In-Situ Formation of Cobalt-Phosphate Oxygen-Evolving Complex-Anchored Reduced Graphene Oxide Nanosheets for Oxygen Reduction Reaction

机译:原位形成钴-氧-放氧复合物-锚定的还原氧化石墨烯纳米片的氧还原反应

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摘要

Oxygen conversion process between O2 and H2O by means of electrochemistry or photochemistry has lately received a great deal of attention. Cobalt-phosphate (Co-Pi) catalyst is a new type of cost-effective artificial oxygen-evolving complex (OEC) with amorphous features during photosynthesis. However, can such Co-Pi OEC also act as oxygen reduction reaction (ORR) catalyst in electrochemical processes? The question remains unanswered. Here for the first time we demonstrate that Co-Pi OEC does be rather active for the ORR. Particularly, Co-Pi OEC anchoring on reduced graphite oxide (rGO) nanosheet is shown to possess dramatically improved electrocatalytic activities. Differing from the generally accepted role of rGO as an “electron reservoir”, we suggest that rGO serves as “peroxide cleaner” in enhancing the electrocatalytic behaviors. The present study may bridge the gap between photochemistry and electrochemistry towards oxygen conversion.
机译:通过电化学或光化学在O 2和H 2 O之间进行氧气转化的方法近来引起了广泛的关注。磷酸钴(Co-Pi)催化剂是一种新型的经济有效的人工合成氧气的复合物(OEC),在光合作用中具有无定形特征。但是,这种Co-Pi OEC还能在电化学过程中充当氧还原反应(ORR)催化剂吗?问题仍然没有答案。这是我们第一次证明Co-Pi OEC对于ORR相当活跃。特别地,Co-Pi OEC锚固在还原的氧化石墨(rGO)纳米片上显示具有显着改善的电催化活性。与一般公认的rGO作为“电子储库”的作用不同,我们建议rGO在增强电催化行为方面起“过氧化物清洁剂”的作用。本研究可能弥合光化学和电化学之间的氧气转换的差距。

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