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The adsorption of a single water molecule on low-index C_3S surfaces: A DFT approach

机译:低折射率C_3S表面上单个水分子的吸附:DFT方法

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The adsorption of water molecules on tricalcium silicate (C3S), which influences the initial hydration of C3S, is still unclear at the atomistic level. In the present paper, density functional theory is employed to depict the adsorption of a single water molecule on seven low-index M-3-C3S surfaces. The calculations show that both molecular and dissociative adsorption can occur on the C3S surfaces and that the latter mode is preferential. All of the ionic O atoms on the C3S surfaces can adsorb the H atoms from dissociated water molecules, while only two-coordinated covalent O atoms on the surfaces can form O-H chemical bonds. The electronic structures of the ionic and two-coordinated covalent O atoms in the first atomic layer of the C3S surfaces show similar charge density localization of the valence band maximum (VBM), which can describe the variations in the reactivity of the ionic O atoms in the bulk or exposed on the surface slab. The partial density of states (PDOS) analysis shows that the formation of new Ca-O bonds is mainly due to the overlap of O-2s and Ca-3p orbitals and O-2p and Ca-3d orbitals. Furthermore, the position of the OH group generated from the dissociated water molecule is found to significantly affect the adsorption energy. The general order of the adsorption energy in terms of the position of the OH group is E-hollow E-bridge E-top. The findings in this study provide additional support for the fundamental understanding of C3S hydration.
机译:水分子在硅酸三钙(C3S)上的吸附会影响C3S的初始水合,但在原子水平上尚不清楚。在本文中,使用密度泛函理论描述了单个水分子在七个低指数M-3-C3S表面上的吸附。计算结果表明,分子吸附和解离吸附都可以在C3S表面发生,后一种模式是优先的。 C3S表面上的所有离子性O原子都可以吸附离解的水分子中的H原子,而表面上只有两个配位的共价O原子可以形成O-H化学键。 C3S表面的第一原子层中的离子和两个配位共价O原子的电子结构显示出相似的价带最大值(VBM)电荷密度局域性,这可以描述离子O原子的反应性变化。散装或暴露在表面平板上。状态部分密度(PDOS)分析表明,新的Ca-O键的形成主要是由于O-2s和Ca-3p轨道以及O-2p和Ca-3d轨道的重叠。此外,发现从离解的水分子产生的OH基的位置显着影响吸附能。就OH基的位置而言,吸附能的一般顺序为E-空心> E-桥> E-顶部。这项研究中的发现为C3S水化的基本理解提供了额外的支持。

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