首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Tolerance to carbon corrosion of various carbon structures as catalyst supports for polymer electrolyte membrane fuel cells
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Tolerance to carbon corrosion of various carbon structures as catalyst supports for polymer electrolyte membrane fuel cells

机译:对各种碳结构的碳腐蚀的耐受碳腐蚀作为催化剂的聚合物电解质膜燃料电池载体

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To overcome the stability issue at high voltages related to the carbon corrosion of polymer electrolyte membrane fuel cells, different types of platelet carbon nanofibers (PCNFs) featuring a wide range of fiber stems are employed as a Pt catalyst supporting material. Further, PCNFs are hybridized with spherical activated carbons (SC) as a Pt support to improve the electrocatalytic activity of the catalysts by increasing the surface area and electrical conductivity with well-distributed meso- and macro-pores, while maintaining tolerance to carbon corrosion of electrocatalysts. Tafel slopes of the catalysts for the kinetic current of electrocatalysts are in the order of Pt/PCNF (-58.2 mV dec(-1)) < Pt/Hybrid (-57.0 mV dec(-1)) < Pt/SC (-54.3 mV dec(-1)), showing the rapid kinetics of Pt/SC and Pt/Hybrid for the oxygen reduction reaction. The Pt catalysts are subjected to accelerated stress tests (AST) in which the cell voltage is cycled between 1.0 and 1.5 V in 2 s (1 cycle), and the Pt/PCNF and Pt/Hybrid catalysts are highly durable in carbon-corrosion durability testing. Furthermore, the MEAs with the Pt/PCNF, Pt/SC, and Pt/Hybrid catalysts are operated at 65 degrees C, and the maximum power densities of MEAs were 0.708, 0.674, and 0.507 W cm(-2) for Pt/SC, Pt/Hybrid, and Pt/PCNF, respectively, as is consistent with the characteristics of catalysts. The MEAs are also subjected to AST at 80 degrees C, and a relatively small performance decay occurred at 0.6 V for the Pt/PCNF (36.2%) and Pt/Hybrid MEAs (44.0%), but considerably more degradation was observed for Pt/SC MEA (73.2%), signifying that the mechanochemically durable PCNF effectively prevented carbon corrosion with Pt agglomeration.
机译:为了克服与聚合物电解质膜燃料电池的碳腐蚀相关的高电压下的稳定性问题,采用不同类型的血小板碳纳米纤维(PCNFS)作为PT催化剂支撑材料的纤维茎。此外,PCNFs用球形活化的碳(SC)杂交,作为PT载体,以通过增加表面积和具有良好分布的中间孔和宏观孔的表面积和电导率来改善催化剂的电催化活性,同时保持对碳腐蚀的耐受性电催化剂。电催化剂动力催化剂的催化剂的Tafel斜率为Pt / PCNF(-58.2mV DEC(-1))

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