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氧化铈上的金理论。

Theory of gold on ceria.

机构信息

London Centre for Nanotechnology and Department of Chemistry, University College London, London WC1H 0AH.

出版信息

Phys Chem Chem Phys. 2011 Jan 7;13(1):22-33. doi: 10.1039/c0cp01123a. Epub 2010 Nov 3.

Abstract

The great promise of ceria-supported gold clusters as catalysts of the future for important industrial processes, such as the water gas shift reaction, has prompted a flurry of activity aimed at understanding the molecular-level details of their operation. Much of this activity has focused on experimental and theoretical studies of the structure of perfect and defective ceria surfaces, with and without gold clusters of various sizes. The complicated electronic structure of ceria, particularly in its reduced form, means that at present it is highly challenging to carry out accurate electronic structure simulations of such systems. To overcome the challenges, the majority of recent theoretical studies have adopted a pragmatic and often controversial approach, applying the so-called DFT + U technique. Here we will briefly discuss some recent studies of Au on CeO(2){111} that mainly use this methodology. We will show that considerable insight has been obtained into these systems, particularly with regard to Au adsorbates and Au cluster reactivity. We will also briefly discuss the need for improved electronic structure methods, which would enable more rigorous and robust studies in the future.

摘要

铈负载金团簇作为未来重要工业过程(如水煤气变换反应)催化剂的巨大前景,促使人们开展了大量旨在了解其工作分子水平细节的研究。其中许多研究集中在铈表面的完美和缺陷结构以及具有不同尺寸的金团簇的实验和理论研究上。氧化铈的复杂电子结构,特别是在其还原形式下,意味着目前对这类系统进行精确的电子结构模拟极具挑战性。为了克服这些挑战,大多数最近的理论研究都采用了一种实用且常常有争议的方法,即应用所谓的 DFT+U 技术。在这里,我们将简要讨论一些最近关于 CeO(2){111}上 Au 的研究,这些研究主要使用了这种方法。我们将表明,人们已经对这些系统有了相当深入的了解,特别是对于 Au 吸附物和 Au 团簇的反应性。我们还将简要讨论需要改进电子结构方法,以便未来能够进行更严格和稳健的研究。

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