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N, F dual-doped carbon embedded with Co&CoN paragenetic structure for oxygen electrocatalytic reduction reaction

机译:N,F双掺杂碳嵌入具有CO和CONAGENITIC结构的氧气催化还原反应

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摘要

Developing effective earth aboundant non-precious metal electrocatalysts for oxygen reduction reaction (ORR) is highly demanded in clean energy conversion systems, such as fuel cells. In this work, we demonstrate N,F dual-doped carbon embedded with Co&CoN paragenetic structure (N,F-Co&CoN@C) as an effective ORR electrocatalyst through directly pyrolyzing the solid mixture of cobalt chloride hexahydrate, melamine hydrogen fluoride and carbon black in an N-2 atmosphere. N,F-Co&CoN@C prepared at 700 degrees C (N,F-Co&CoN@C700) exhibits an excellent electrocatalytic performance with the ORR peak potential (E-p) at 0.875 V, the half wave potential (E-1/2) at 0.871 V and a nearly four-electron reaction path in 0.1 M KOH. It also displays a better stability and methanol-tolerance than that of the commercial 40 wt% Pt/C. Origin of this outstanding performance of the prepared N,F-Co&CoN@C700 comes from the synergistic effect of Co&CoN and N,F-C in the hybrid materials. TEM images, STEM-mapping images, XRD and XPS results verify that N,F -Co&CoN@C700 has a core@shell structure with Co&CoN paragenetic structure embedded in N, F dual-doped carbon. Its specific surface area is calculated to be 1018 m(2)/g with a high defect degree of the I-D/I-G at 1.31. (C) 2020 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:开发有效的地球吸收剂非贵金属电催化剂用于氧还原反应(ORR),在清洁能量转换系统(例如燃料电池)中都是高度要求的。在这项工作中,我们将N,F双掺杂碳嵌入CO和CONAGENITIC结构(N,F-CO和CON)作为有效的ORR电催化剂,通过直接热解氯化钴六水合物,三聚氰胺氟化氢和炭黑的固体混合物N-2气氛。 n,在700摄氏度(n,f-co&con @ c700)中准备的f-co&con @ c具有优异的电催化性能,具有0.875 V,半波电位(E-1/2)的ORR峰值电位(EP)。 0.871 V和0.1M KOH的近四电子反应路径。它还显示出比商业40wt%pt / c更好的稳定性和甲醇耐受性。制备的N个优异性能的原点来自CO,CO和CON @ C700来自杂交材料中的CO和CON和N,F-C的协同作用。 TEM图像,旋置图像,XRD和XPS结果验证了N,F -CO和CON @ C700具有核心@ Shell结构,其具有嵌入N,F双掺杂碳的CO和CONAGENETIC结构。其比表面积计算为1018μm(2)/ g,在1.31处具有高缺陷度的I-D / I-G的缺陷。 (c)2020氢能源出版物LLC。 elsevier有限公司出版。保留所有权利。

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