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Self-deposition of Pt nanocrystals on Mn3O4 coated carbon nanotubes for enhanced oxygen reduction electrocatalysis

机译:Pt纳米晶体在Mn3O4包覆的碳纳米管上的自沉积,以增强氧还原电催化作用

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摘要

Developing catalysts with high electrocatalytic activity for oxygen reduction reaction (ORR) has recently attracted much attention because the sluggish ORR limits the performance and commercialization of current PEMFCs and metal-air batteries as well. Herein, a facile approach was reported to synthesize Mn3O4 nanoparticle coated carbon nanotubes (Mn3O4/CNTs) and self-deposit well-dispersed Pt nanocrystals on Mn3O4/CNTs to obtain Pt/Mn 3O4/CNTs hybrid catalysts via in situ reduction of support matrix with no need of any capping agent and additional reducing agent. As a result of good dispersion of uncapped Pt nanocrystals, interconnected carbon nanotube conductive network, and possible synergetic co-catalytic effect from heterojunction interfaces of Pt nanocrystals and Mn3O4, the as-prepared Pt/Mn3O4/CNTs hybrid catalysts demonstrated much enhanced electrocatalytic activity for ORR. The reported strategy may inspire the development of new high efficient hybrid electrocatalysts in a cost-effective way with the potential to harness the metal/oxide interaction to improve the performance of catalysts. This journal is ? The Royal Society of Chemistry 2013.
机译:由于低的ORR限制了目前的PEMFC和金属-空气电池的性能和商业化,因此开发用于氧还原反应(ORR)的具有高电催化活性的催化剂近来引起了人们的广泛关注。本文报道了一种简便的方法来合成Mn3O4纳米颗粒包覆的碳纳米管(Mn3O4 / CNTs)和在Mn3O4 / CNTs上自沉积良好分散的Pt纳米晶体,从而通过载体基质原位还原Pt / Mn 3O4 / CNTs杂化催化剂。不需要任何封端剂和其他还原剂。由于未封端的Pt纳米晶体良好的分散性,相互连接的碳纳米管导电网络以及Pt纳米晶体和Mn3O4的异质结界面可能产生的协同协同催化作用,制备的Pt / Mn3O4 / CNTs杂化催化剂表现出大大增强的电催化活性ORR。报道的策略可能以具有成本效益的方式激发新型高效混合电催化剂的开发,并有可能利用金属/氧化物的相互作用来改善催化剂的性能。这本日记是?皇家化学学会,2013年。

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