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CoMn Layered Double Hydroxides/Carbon Nanotubes Architectures as High-Performance Electrocatalysts for the Oxygen Evolution Reaction

机译:CoMn层状双氢氧化物/碳纳米管结构作为用于析氧反应的高性能电催化剂

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摘要

High-efficiency, earth-abundant oxygen evolution reaction (OER) catalysts are highly desired and required for the half reaction of water splitting. Herein, an integrated system composed of CoMn layered double hydroxides (CoMn-LDH) and carbon nanotubes (CNTs) were configured for the OER. Ultrathin CoMn-LDH nanoplates can grow and assemble in situ on conducting CNT frameworks to form the CoMn-LDH/CNT nanoarchitectures. The CNT frameworks provide conducting channels for fast charge transfer, whereas CoMn-LDH features highly active sites and is capable of catalyzing the OER process. Benefiting from functional integration of the highly active CoMn-LDH nanoplates and the strong coupling effects between ultrathin nanoplates and conducting CNT frameworks, the as-made CoMn-LDH/CNT nanohybrids achieve excellent OER performance with a small overpotential (355 mV at 10 mAcm(-2)), low Tafel slope (45 mVdec(-1)), and prominent electrochemical durability.
机译:对于水分解的半反应,非常需要高效的,地球上富氧的放氧反应(OER)催化剂。在此,将由CoMn层状双氢氧化物(CoMn-LDH)和碳纳米管(CNT)组成的集成系统用于OER。超薄CoMn-LDH纳米板可以在导电CNT框架上原位生长和组装,从而形成CoMn-LDH / CNT纳米结构。 CNT框架提供了快速电荷转移的传导通道,而CoMn-LDH具有高活性位点,并能够催化OER过程。得益于高活性CoMn-LDH纳米板的功能集成以及超薄纳米板和导电CNT框架之间的强耦合效应,制成的CoMn-LDH / CNT纳米杂化物具有出色的OER性能,并且具有较小的过电势(10 mAcm(355 mV( -2)),低Tafel斜率(45 mVdec(-1))和出色的电化学耐久性。

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