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多面体衬底上的纳米级表面化学:结构、反应性与纳米模板

Nanoscale surface chemistry over faceted substrates: structure, reactivity and nanotemplates.

作者信息

Madey Theodore E, Chen Wenhua, Wang Hao, Kaghazchi Payam, Jacob Timo

机构信息

Rutgers, The State University of New Jersey, Department of Physics and Astronomy, and Laboratory for Surface Modification, 136 Frelinghuysen Road, Piscataway, NJ 08854-8019, USA.

出版信息

Chem Soc Rev. 2008 Oct;37(10):2310-27. doi: 10.1039/b719551f. Epub 2008 Sep 2.

Abstract

Faceting is a form of self-assembly at the nanometre-scale on adsorbate-covered single-crystal surfaces, occurring when an initially planar surface converts to a "hill and valley" structure, exposing new crystal faces of nanometre-scale dimensions. Planar metal surfaces that are rough on the atomic scale, such as bcc W(111), fcc Ir(210) and hcp Re(1231), are morphologically unstable when covered by monolayer films of oxygen, or by certain other gases or metals, becoming "nanotextured" when heated to temperatures above approximately 700 K. Faceting is driven by surface thermodynamics (anisotropy of surface free energy) but controlled by kinetics (diffusion, nucleation). Surfaces can spontaneously rearrange to minimize their total surface energy (by developing facets), even if this involves an increase in surface area. In this critical review, we discuss the structural and electronic properties of such surfaces, and first principles calculations are compared with experimental observations. The utility of faceted surfaces in studies of structure sensitive reactions (e.g., CO oxidation, ammonia decomposition) and as templates for growth of metallic nanostructures is explored (122 references).

摘要

刻面是在吸附质覆盖的单晶表面上纳米尺度的一种自组装形式,当最初的平面表面转变为“丘陵和山谷”结构时发生,暴露出纳米尺度尺寸的新晶面。在原子尺度上粗糙的平面金属表面,如体心立方的W(111)、面心立方的Ir(210)和六方密堆积的Re(1231),当被氧的单层膜或某些其他气体或金属覆盖时,形态上是不稳定的,当加热到大约700 K以上的温度时会变成“纳米织构化”。刻面由表面热力学(表面自由能的各向异性)驱动,但受动力学(扩散、成核)控制。表面可以自发重排以使其总表面能最小化(通过形成刻面),即使这涉及表面积的增加。在这篇综述中,我们讨论了这类表面的结构和电子性质,并将第一性原理计算与实验观察结果进行了比较。探讨了刻面表面在结构敏感反应(如CO氧化、氨分解)研究中的效用以及作为金属纳米结构生长模板的效用(参考文献122篇)。

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