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Efficient oxygen reduction electrocatalysis on Mn_3O_4 nanoparticles decorated N-doped carbon with hierarchical porosity and abundant active sites

机译:Mn_3O_4纳米粒子上的高效氧还原电催化修饰的N掺杂碳具有分层的孔隙率和丰富的活性位

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摘要

Transition metal on nitrogen-doped carbons (M-N-C, M = Fe, Co, Mn, etc.) are a group of promising sustainable electrocatalysts toward oxygen reduction reaction (ORR). Compared to its Fe, Co analogues, Mn-N-C possesses the advantage of being inert for catalyzing Fenton reaction, and thus is expected to offer higher durability, but its ORR activity needs essential improvement. Herein, an efficient Mn-N-C ORR catalyst composed of Mn3O4 nanoparticles supported on nitrogen-doped carbon was successfully synthesized by pyrolysis of cyanamide/Mn-incorporated polydopamine (PDA) film coated carbon black (CB), where the presence of N-rich cyanamide confers abundant Mn-N-x active sites and rich micropore/mesopores to the catalyst. In an alkaline medium, as synthesized Mn-N-C electrocatalyst outperforms commercial Pt/C catalyst in terms of onset potential (0.98 V, vs. RHE), half-wave potential (0.868 V, vs. RHE), and limiting current density. Meanwhile, it exhibits excellent durability and resistance to methanol. In a Zinc-air primary battery, it demonstrates better performance as a cathodic catalyst than Pt/C. (C) 2019 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:氮掺杂碳上的过渡金属(M-N-C,M = Fe,Co,Mn等)是一组有希望的可持续氧还原反应(ORR)电催化剂。与Fe,Co类似物相比,Mn-N-C具有惰性,可催化Fenton反应,因此有望提供更高的耐久性,但其ORR活性需要实质性提高。在此,通过热裂解氰胺/掺有锰的聚多巴胺(PDA)薄膜包被的炭黑(CB),成功地合成了由负载在掺氮碳上的Mn3O4纳米颗粒组成的高效Mn-NC ORR催化剂,其中存在富氮氰胺赋予催化剂丰富的Mn-Nx活性位和丰富的微孔/中孔。在碱性介质中,合成的Mn-N-C电催化剂在起始电势(0.98 V,相对于RHE),半波电势(0.868 V,相对于RHE)和极限电流密度方面优于商用Pt / C催化剂。同时,它表现出优异的耐久性和耐甲醇性。在锌空气一次电池中,它表现出比Pt / C更好的阴极催化剂性能。 (C)2019氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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