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超薄二氧化硅薄膜:二维晶体与玻璃的原子结构

Ultrathin silica films: the atomic structure of two-dimensional crystals and glasses.

作者信息

Büchner Christin, Lichtenstein Leonid, Yu Xin, Boscoboinik J Anibal, Yang Bing, Kaden William E, Heyde Markus, Shaikhutdinov Shamil K, Włodarczyk Radosław, Sierka Marek, Sauer Joachim, Freund Hans-Joachim

机构信息

Department of Chemical Physics, Fritz Haber Institute of the Max Planck Society, Faradayweg 4-6, 14195 Berlin (Germany).

出版信息

Chemistry. 2014 Jul 21;20(30):9176-83. doi: 10.1002/chem.201402452. Epub 2014 Jul 2.

Abstract

For the last 15 years, we have been studying the preparation and characterization of ordered silica films on metal supports. We review the efforts so far, and then discuss the specific case of a silica bilayer, which exists in a crystalline and a vitreous variety, and puts us into a position to investigate, for the first time, the real space structure (AFM/STM) of a two-dimensional glass and its properties. We show that pair correlation functions determined from the images of this two-dimensional glass are similar to those determined by X-ray and neutron scattering from three-dimensional glasses, if the appropriate sensitivity factors are taken into account. We are in a position, to verify, for the first time, a model of the vitreous silica structure proposed by William Zachariasen in 1932. Beyond this, the possibility to prepare the crystalline and the glassy structure on the same support allows us to study the crystal-glass phase transition in real space. We, finally, discuss possibilities to use silica films to start investigating related systems such as zeolites and clay films. We also mention hydroxylation of the silica films in order to adsorb metal atoms modeling heterogenized homogeneous catalysts.

摘要

在过去的15年里,我们一直在研究金属载体上有序二氧化硅薄膜的制备和表征。我们回顾了迄今为止所做的工作,然后讨论了二氧化硅双层的具体情况,它有晶体和玻璃态两种形式,使我们首次能够研究二维玻璃的真实空间结构(原子力显微镜/扫描隧道显微镜)及其性质。我们表明,如果考虑到适当的灵敏度因子,从这种二维玻璃图像确定的对关联函数与通过X射线和中子散射从三维玻璃确定的对关联函数相似。我们首次有能力验证威廉·扎卡里亚森在1932年提出的玻璃态二氧化硅结构模型。除此之外,在同一载体上制备晶体和玻璃态结构的可能性使我们能够在真实空间中研究晶态-玻璃态相变。最后,我们讨论了使用二氧化硅薄膜开始研究相关体系(如沸石和粘土薄膜)的可能性。我们还提到了二氧化硅薄膜的羟基化,以便吸附模拟均相催化剂多相化的金属原子。

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