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ORR Activity Enhancement of MBE-prepared Pt monolayer on Au Single-Crystal Substrate

机译:ORR活性增强Au单晶衬底上的MBE制备的PT单层

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Oxygen reduction reaction (ORR) activities of Pt/Au(111) and Pt/Au(100) bimetallic surfaces prepared using molecular beam epitaxy were evaluated in this study. Surface structures of the bimetallic surfaces were verified using a scanning tunneling microscope under ultra-high vacuum conditions. The deposition of a 0.3-nm-thick Pt on a clean Au(111) at 300 K (300K-Pt_(0.3nm)/Au(111)) generated a corrugated Pt(111) epitaxial layer on which monoatomic-height Pt islands are present. The ORR activity estimated from the kinetically controlled current density at 0.9 V vs. RHE was ca. two times greater than that of the clean Pt(l 11). In contrast, the 473K-Pt_(0.3nm)/Au(111) as well as 300K-Pt_(0.3nm)/Au(100) exhibited small hydrogen-related charges, thereby were less ORR active than the corresponding clean Pt substrate surfaces. These results suggest that atomic arrangements of surface Pt atoms, particularly the morphologies of the most dense plane of Pt(111), correlate with the enhancement in the ORR activity of Pt-Au bimetallic nanoparticles.
机译:氧还原反应(ORR)(100)的双金属表面使用分子束外延制备铂/金(111)和Pt / Au构成的活动在本研究中进行评价。使用超高真空条件下的扫描隧道显微镜的双金属表面的表面结构进行了验证。 (/金(111)300K-PT_(在0.3nm))产生的在0.3nm厚的Pt上的干净的Au(111)在300K沉积波纹的Pt(111)外延层在其上的单原子高度的Pt岛屿存在。在ORR活性从动力学控制的电流密度在0.9伏与估计是RHE约比清洁的Pt(111)的大两倍。与此相反,473K-PT_(在0.3nm)/ Au的(111)以及300K-PT_(在0.3nm)/ Au的(100)表现出小的氢相关的费用,从而不太ORR活性比相应的清洁的Pt基材表面。这些结果表明表面的Pt原子的那个原子排列,铂(111),用铂 - 金双金属纳米粒子的ORR活性增强互相关联最密平面的特别是形态。

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