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首页> 外文期刊>Electrochimica Acta >Preparation and electrocatalytic activity of 3D hierarchical porous spinel CoFe2O4 hollow nanospheres as efficient catalyst for Oxygen Reduction Reaction and Oxygen Evolution Reaction
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Preparation and electrocatalytic activity of 3D hierarchical porous spinel CoFe2O4 hollow nanospheres as efficient catalyst for Oxygen Reduction Reaction and Oxygen Evolution Reaction

机译:3D分级尖晶石型CoFe2O4空心纳米球的制备及其电催化活性,作为氧还原反应和析氧反应的有效催化剂

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Lithium-air battery has attracted extensively attention and now developing catalysts with high electrocatalytic activity is one of the challenges for lithium-air battery. In this paper, 3D hierarchical porous spinel CoFe2O4 hollow nanospheres were first prepared by a facile hydrothermal method. The hollow CoFe2O4 nanospheres have unique bimodal porous structure which consists of micropores and mesopores. The catalytic activity of the CoFe2O4 hollow nanospheres for oxygen reduction reaction (ORR) has been studied and compared with the acetylene black, the solid CoFe2O4 nanospheres and the commercial Pt/C by using rotating ring-disk electrode (RRDE) technique. The spinel CoFe2O4 hollow nanospheres exhibit superior catalytic activity for the ORR compared to the acetylene black and the solid CoFe2O4 nanospheres. Besides, the spinel CoFe2O4 hollow nanospheres also afford high catalytic activity for the oxygen evolution reaction (OER). Furthermore, the hollow CoFe2O4 nanospheres show the smallest overpotential between ORR and OER. The chronoamperometric studies show that the CoFe2O4 hollow nanospheres exhibit excellent stability for both the ORR and OER. The high ORR and OER activities and stabilities of CoFe2O4 hollow nanospheres could be attributed to their special 3D hierarchical porous structure. This material shows a significant potential application on lithium-air battery. (C) 2014 Elsevier Ltd. All rights reserved.
机译:锂空气电池引起了广泛的关注,现在开发具有高电催化活性的催化剂是锂空气电池的挑战之一。本文首先通过简便的水热法制备了3D分级尖晶石型CoFe2O4空心纳米球。中空的CoFe2O4纳米球具有独特的双峰多孔结构,该结构由微孔和中孔组成。研究了CoFe2O4空心纳米球对氧还原反应(ORR)的催化活性,并通过旋转环盘电极(RRDE)技术将其与乙炔黑,固态CoFe2O4纳米球和市售Pt / C进行了比较。与乙炔黑和固态CoFe2O4纳米球相比,尖晶石CoFe2O4空心纳米球对ORR表现出优异的催化活性。此外,尖晶石CoFe2O4中空纳米球还为氧释放反应(OER)提供了高催化活性。此外,空心CoFe2O4纳米球在ORR和OER之间显示出最小的过电势。计时电流法研究表明,CoFe2O4空心纳米球对ORR和OER均显示出极好的稳定性。 CoFe2O4空心纳米球的高ORR和OER活性以及稳定性可归因于其特殊的3D分层多孔结构。这种材料在锂空气电池上显示出巨大的潜在应用。 (C)2014 Elsevier Ltd.保留所有权利。

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