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水分子对氧化铝(001)表面的高物理吸附亲和力。

High physisorption affinity of water molecules to the hydroxylated aluminum oxide (001) surface.

机构信息

Department of Chemistry, Faculty of Science, Okayama University of Science, 1-1 Ridaicho, Okayama 700-0005, Japan.

出版信息

J Colloid Interface Sci. 2012 Feb 15;368(1):552-7. doi: 10.1016/j.jcis.2011.11.053. Epub 2011 Dec 1.

Abstract

The adsorption mechanism of water on the hydroxylated (001) plane of α-Al(2)O(3) was studied by measuring adsorption isotherms and GCMC simulations. The experimental adsorption isotherms for three α-Al(2)O(3) samples from different sources are typical type II, in which adsorption starts sharply at low pressures, suggesting a high affinity of water to the Al(2)O(3) surface. Water molecules are adsorbed in two registered forms (bilayer structure). In the first form, water is registered at the center of three surface hydroxyl groups by directing a proton of the water. In the second form, a water molecule is adsorbed by bridging two of the first-layer water molecules through hydrogen bonding, by which a hexagonal ring network is constructed over the hydroxylated surface. The network domains are spread over the surface, and their size decreases as the temperature increases. The simulated adsorption isotherms present a characteristic two-dimensional (2D) phase diagram including a 2D critical point at 365K, which is higher than that on the hydroxylated Cr(2)O(3) surface (319 K). This fact substantiates the high affinity of water molecules to the α-Al(2)O(3) surfaces, which enhances the adsorbability originating from higher heat of adsorption. The higher affinity of water molecules to the α-Al(2)O(3) (001) plane is ascribed to the high compatibility of the crystal plane to form a hexagonal ring network of (001) plane of ice Ih.

摘要

通过测量吸附等温线和 GCMC 模拟,研究了水在α-Al(2)O(3)羟基化(001)面上的吸附机理。来自不同来源的三种α-Al(2)O(3)样品的实验吸附等温线是典型的 II 型,其中吸附在低压下急剧开始,表明水对 Al(2)O(3)表面具有高亲和力。水分子以两种注册形式(双层结构)被吸附。在第一种形式中,水通过指向水分子的质子被吸附在三个表面羟基的中心。在第二种形式中,一个水分子通过氢键桥接第一层水分子中的两个水分子而被吸附,从而在羟基化表面上构建了一个六方环网络。网络域分布在表面上,其大小随温度升高而减小。模拟吸附等温线呈现出一个特征二维(2D)相图,包括在 365K 处的二维临界点,高于在羟基化 Cr(2)O(3)表面(319K)处的临界点。这一事实证实了水分子对α-Al(2)O(3)表面的高亲和力,这增强了吸附能力,源于更高的吸附热。水分子对α-Al(2)O(3)(001)面的高亲和力归因于晶体平面与冰 Ih(001)面的六方环网络的高兼容性。

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