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金属表面的电子结构与催化作用

Electronic structure and catalysis on metal surfaces.

作者信息

Greeley Jeff, Nørskov Jens K, Mavrikakis Manos

机构信息

Department of Chemical Engineering, University of Wisconsin, Madison, Wisconsin 53706; e-mail:

出版信息

Annu Rev Phys Chem. 2002;53:319-48. doi: 10.1146/annurev.physchem.53.100301.131630. Epub 2001 Oct 4.

Abstract

The powerful computational resources available to scientists today, together with recent improvements in electronic structure calculation algorithms, are providing important new tools for researchers in the fields of surface science and catalysis. In this review, we discuss first principles calculations that are now capable of providing qualitative and, in many cases, quantitative insights into surface chemistry. The calculations can aid in the establishment of chemisorption trends across the transition metals, in the characterization of reaction pathways on individual metals, and in the design of novel catalysts. First principles studies provide an excellent fundamental complement to experimental investigations of the above phenomena and can often allow the elucidation of important mechanistic details that would be difficult, if not impossible, to determine from experiments alone.

摘要

如今科学家可利用的强大计算资源,再加上电子结构计算算法最近的改进,正在为表面科学和催化领域的研究人员提供重要的新工具。在这篇综述中,我们讨论了第一性原理计算,它现在能够对表面化学提供定性的,并且在许多情况下是定量的见解。这些计算有助于确定过渡金属上的化学吸附趋势,有助于表征单个金属上的反应路径,还有助于设计新型催化剂。第一性原理研究为上述现象的实验研究提供了出色的基本补充,并且常常能够阐明仅凭实验难以(如果不是不可能的话)确定的重要机理细节。

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