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首页> 外文期刊>Kinetics and catalysis >Development of Carbon Supports with Increased Corrosion Resistance for Pt/C Catalysts for Oxygen Electroreduction
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Development of Carbon Supports with Increased Corrosion Resistance for Pt/C Catalysts for Oxygen Electroreduction

机译:开发用于Pt / C氧电解还原的具有增强耐蚀性的碳载体

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摘要

The influence of different surface modifications of carbon supports on the corrosion resistance of 50 wt % Pt/C catalysts on their basis was studied. The corrosion resistance was measured from changes in the electroactive surface area of platinum in the course of potential cycling from 1.0 to 1.5 V versus the reversible hydrogen electrode (potential sweep rate, 0.5 V/s) during 60000 cycles. A 40% Pt/Vulcan XC-72 commercial catalyst was used as the reference sample. The supports were modified by the carbonization of the high surface area carbon black Ketjenblack DJ-600 and by the additional activation of the carbon-carbon composite Sibunit-1562. It was found that the preliminary carbonization of the Ketjenblack DJ-600 support with a propane-butane mixture at 770 degrees C and the activation of Sibunit-1562 with subsequent thermal treatment at 500 degrees C increased and decreased, respectively, the corrosion resistance of the 50 wt % Pt/C catalysts on their basis.
机译:在此基础上,研究了碳载体不同表面改性对50 wt%Pt / C催化剂抗腐蚀性能的影响。耐腐蚀性是通过在60000次循环中,相对于可逆氢电极(电势扫描速率,0.5 V / s)从1.0到1.5 V的电位循环过程中,铂的电活性表面积的变化来测量的。使用40%Pt / Vulcan XC-72商业催化剂作为参考样品。通过高表面积炭黑Ketjenblack DJ-600的碳化和碳-碳复合材料Sibunit-1562的额外活化来改性载体。结果发现,在770摄氏度下用丙烷-丁烷混合物对Ketjenblack DJ-600载体进行的初步碳化和在500摄氏度下的热处理下Sibunit-1562的活化分别增加和减少,基于它们的50重量%的Pt / C催化剂。

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