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Activity and Stability of Dispersed Multi Metallic Pt-based Catalysts for CO Tolerance in Proton Exchange Membrane Fuel Cell Anodes

机译:质子交换膜燃料电池阳极分散多金属铂基催化剂的耐CO活性和稳定性

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Studies aiming at improving the activity and stability of dispersed W and Mo containing Pt catalysts for the CO tolerance in proton exchange membrane fuel cell (PEMFC) anodes are revised for the following catalyst systems: (1) a carbon supported PtMo electrocatalyst submitted to heat treatments; (2) Pt and PtMo nanoparticles deposited on carbon-supported molybdenum carbides (Mo 2 C/C); (3) ternary and quaternary materials formed by PtMoFe/C, PtMoRu/C and PtMoRuFe/C and; (4) Pt nanoparticles supported on tungsten carbide/carbon catalysts and its parallel evaluation with carbon supported PtW catalyst. The heat-treated (600 o C) Pt-Mo/C catalyst showed higher hydrogen oxidation activity in the absence and in the presence of CO and better stability, compared to all other Mo-containing catalysts. PtMoRuFe, PtMoFe, PtMoRu supported on carbon and Pt supported on Mo 2 C/C exhibited similar CO tolerances but better stability, as compared to as-prepared PtMo supported on carbon. Among the tungsten-based catalysts, tungsten carbide supported Pt catalyst showed reasonable performance and reliable stability in comparison to simple carbon supported PtW catalyst, though an uneven level of catalytic activity towards H 2 oxidation in presence of CO is observed for the former as compared to Mo containing catalyst. However, a small dissolution of Mo, Ru, Fe and W from the anodes and their migration toward cathodes during the cell operation is observed. These results indicate that the fuel cell performance and stability has been improved but not yet totally resolved.
机译:旨在改善质子交换膜燃料电池(PEMFC)阳极对CO耐受性的旨在改善分散的含W和Mo的Pt催化剂的活性和稳定性的研究针对以下催化剂体系进行了修订:(1)进行热处理的碳载PtMo电催化剂; (2)沉积在碳负载的碳化钼(Mo 2 C / C)上的Pt和PtMo纳米颗粒; (3)由PtMoFe / C,PtMoRu / C和PtMoRuFe / C构成的三元和四元材料;以及(4)碳化钨/碳催化剂上负载的Pt纳米颗粒及其与碳负载PtW催化剂的平行评价。与所有其他含Mo催化剂相比,经热处理(600 o C)的Pt-Mo / C催化剂在不存在和存在CO的情况下均表现出更高的氢氧化活性和更好的稳定性。与预先负载在碳上的PtMo相比,负载在碳上的PtMoRuFe,PtMoFe,PtMoRu和在Mo 2 C / C上负载的Pt表现出相似的CO耐受性,但稳定性更高。在钨基催化剂中,与简单的碳载PtW催化剂相比,碳化钨负载的Pt催化剂表现出合理的性能和可靠的稳定性,尽管与之相比,前者在CO存在下对H 2氧化的催化活性水平不均匀。含钼催化剂。然而,在电池操作期间,观察到Mo,Ru,Fe和W从阳极中少量溶解,并向阴极迁移。这些结果表明燃料电池的性能和稳定性已得到改善,但尚未完全解决。

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