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Modification of the surface electronic and chemical properties of Pt(111) by subsurface 3d transition metals

机译:通过表面下的过渡金属改性pt(111)的表面电子和化学性质

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摘要

The modification of the electronic and chemical properties of Pt(111) surfaces by subsurface 3d transition metals was studied using density-functional theory. In each case investigated, the Pt surface d-band was broadened and lowered in energy by interactions with the subsurface 3d metals, resulting in weaker dissociative adsorption energies of hydrogen and oxygen on these surfaces. The magnitude of the decrease in adsorption energy was largest for the early 3d transition metals and smallest for the late 3d transition metals. In some cases, dissociative adsorption was calculated to be endothermic. The surfaces investigated in this study had no lateral strain in them, demonstrating that strain is not a necessary factor in the modification of bimetallic surface properties. The implications of these findings are discussed in the context of catalyst design, particularly for fuel cell electrocatalysts. (C) 2004 American Institute of Physics.
机译:利用密度泛函理论研究了地下3d过渡金属对Pt(111)表面电子和化学性质的改性。在所研究的每种情况下,Pt表面d带通过与地下3d金属的相互作用而增宽和降低能量,从而导致这些表面上氢和氧的较弱的解离吸附能。吸附能下降的幅度对于早期3d过渡金属最大,而对于晚期3d过渡金属最小。在某些情况下,解离吸附被认为是吸热的。在这项研究中研究的表面没有横向应变,这表明应变并不是改变双金属表面性能的必要因素。这些发现的意义在催化剂设计的背景下进行了讨论,特别是对于燃料电池电催化剂。 (C)2004美国物理研究所。

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