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Fast preparation of PtRu catalysts supported on carbon nanofibers by the microwave-polyol method and their application to fuel cells

机译:微波多元醇法快速制备碳纳米纤维负载的PtRu催化剂及其在燃料电池中的应用

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摘要

PtRu alloy nanoparticles (24 +/- 1 wt %, Ru/Pt atomic ratios = 0.91-0.97) supported on carbon nanofibers (CNFs) were prepared within a few minutes by using a microwave-polyol method. Three types of CNFs with very different surface structures, such as platelet, herringbone, and tubular ones, were used as new carbon supports. The dependence of particles sizes and electrochemical properties on the structures of CNFs was examined. It was found that the methanol fuel cell activities of PtRu/CNF catalysts were in the order of platelet > tubular > herringbone. The methanol fuel cell activities of PtRu/CNFs measured at 60 degrees C were 1.7-3.0 times higher than that of a standard PtRu (29 wt %, Ru/Pt atomic ratio = 0.92) catalyst loaded on carbon black (Vulcan XC72R) support. The best electrocatalytic activity was obtained for the platelet CNF, which is characterized by its edge surface and high graphitization degree.
机译:通过使用微波多元醇法在几分钟内制备了负载在碳纳米纤维(CNF)上的PtRu合金纳米颗粒(24 +/- 1 wt%,Ru / Pt原子比= 0.91-0.97)。三种具有不同表面结构的CNF(例如血小板,人字形和管状)被用作新的碳载体。研究了粒径和电化学性能对CNFs结构的依赖性。结果发现,PtRu / CNF催化剂的甲醇燃料电池活性为血小板>管状>人字形。在60摄氏度下测得的PtRu / CNF的甲醇燃料电池活性比负载在炭黑(Vulcan XC72R)上的标准PtRu(29 wt%,Ru / Pt原子比= 0.92)催化剂高1.7-3.0倍。血小板CNF具有最佳的电催化活性,其特征在于其边缘表面和高石墨化度。

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