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Functionalization of carbons for Pt electrocatalyst in PEMFC

机译:PEMFC中PT电催化剂碳的官能化

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One of the limitations of conventional carbon-supported Pt electrocatalyst in Proton Exchange Membrane Fuel cell (PEMFC) is the carbon corrosion during start-up and shut-down of a fuel cell. The present work investigates the stability of three different carbon blacks and their functionalized forms as supports for Pt electrocatalysts. Acetylene black (AB) as a low surface area carbon shows a higher degree of graphitization and effective functionalization than Vulcan carbon and Ketjan black. Electrochemical tests on corrosion studies show that the AB and its functionalized form (f-AB) as support for Pt electrocatalyst exhibits good electrochemical activity with an ECSA of 52 m(2)g(-1) and 78 m(2)g(-1) and excellent corrosion resistance with minimum ECSA loss of 6% and 16% for Pt/AB and Pt/f-AB, respectively, satisfying the DoE target (40% ECSA loss.) This makes the Pt/f-AB a promising durable electrocatalyst for PEMFC with improved activity and durability. (C) 2021 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:在质子交换膜燃料电池(PEMFC)中常规碳支持的PT电催化剂的局限性之一是燃料电池的启动和关闭期间的碳腐蚀。目前的工作研究了三种不同炭黑的稳定性及其官能化形式作为PT电催化剂的支持。乙炔黑(AB)作为低表面积碳,显示出比硫磺碳和瘢痕氏黑色的较高程度的石墨化和有效官能化。腐蚀研究的电化学测试表明,AB及其官能化形式(F-AB)作为对Pt电催化剂的载体表现出良好的电化学活性,ECSA为52m(2)G(-1)和78m(2)G( - 1)和Pt / AB和Pt / F-AB的最小ECSA损失的最小ECSA损失优异的耐腐蚀性为6%和16%,满足DOE靶(& 40%ECSA损失。)这使得PT / F-AB具有改善的活性和耐用性的PEMFC有希望的耐用电催化剂。 (c)2021氢能出版物LLC。 elsevier有限公司出版。保留所有权利。

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