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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >A class of transition metal-oxide@MnOx core-shell structured oxygen electrocatalysts for reversible O-2 reduction and evolution reactions
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A class of transition metal-oxide@MnOx core-shell structured oxygen electrocatalysts for reversible O-2 reduction and evolution reactions

机译:一类用于可逆O-2还原和放出反应的过渡金属氧化物@MnOx核壳结构的氧电催化剂

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摘要

It is highly desirable but challenging to develop a highly active as well as durable bifunctional electrocatalyst for the reversible oxygen reduction reaction and evolution reaction (ORR & OER). Here a new class of bifunctional oxygen electrocatalysts has been developed based on ultrafine transition metal-oxide nanoparticles (NPs), such as NiO, FeO or NiFeO, embedded in an amorphous MnOx shell, where the embedded NP core contributes to the high OER activity and the porous amorphous MnOx shell functions as an effective ORR catalyst as well as providing effective structural confinement to the metal-oxide NP core. The best performance was obtained for NiFeO@ MnOx, exhibiting a potential gap, Delta E, of 0.798 V to achieve a current of 3 mA cm(-2) for the ORR and 5 mA cm(-2) for the OER in 0.1 M KOH solution, better than that of Ir/C (0.924 V) and Pt/C (1.031 V). Most importantly, NiFeO@MnOx shows superior stability due to the outstanding structural confinement effect of the amorphous MnOx, achieving a Delta E of 0.881 V after 300 cycles, outperforming 1.093 V obtained for the state-of-the-art Ir-Pt/C oxygen electrocatalysts.
机译:对于可逆的氧还原反应和析出反应(ORR&OER),开发一种高活性和耐用的双功能电催化剂是非常需要的,但是具有挑战性。在这里,基于超细过渡金属氧化物纳米粒子(NP)(例如NiO,FeO或NiFeO)的新型两类双功能氧电催化剂被开发,该纳米粒子嵌入无定形MnOx壳中,其中嵌入的NP核有助于提高OER活性和多孔无定形MnOx壳层不仅可以用作有效的ORR催化剂,还可以对金属氧化物NP核提供有效的结构限制。对于NiFeO @ MnOx,获得了最佳性能,在0.7M中表现出0.798 V的电势差Delta E,以在0.1 M中获得3mA cm(-2)的电流对ORR和5mA cm(-2)的OER。 KOH溶液优于Ir / C(0.924 V)和Pt / C(1.031 V)。最重要的是,由于非晶态MnOx具有出色的结构限制作用,NiFeO @ MnOx表现出优异的稳定性,在300次循环后,Delta E为0.881 V,优于最新的Ir-Pt / C获得的1.093 V氧电催化剂。

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