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First-Principles Calculation of Water Molecules with Adsorbed Ions on the Fe(001) Surface

机译:Fe(001)表面上具有吸附离子的水分子的第一原理计算

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The behavior of water molecules with sulfate on the Fe(001) surface has been investigated using a first-principles method based on density-functional theory (DFT) with numerical atomic orbitals as basis functions for the description of valence electrons and nonlocal pseudopotentials for the atomic core. We present results for the adsorption structure and the bonding nature as caused by the adsorption-induced variations in the electron density and the projected density of states. We have found that the structure of absorbed sulfate depends on the coverage of water molecule on the surface. Analysis of electrostatic potential at an aqueous metal interface provides an appropriate framework to understand complicated potential structures. The mechanism of proton transfer through dissociative adsorption and hydrogen bonding of water molecules has been obtained from calculated results.
机译:使用基于密度官能理论(DFT)的第一原理方法研究了与硫酸盐对Fe(001)表面的水分子的行为,其具有数值原子轨道作为基础函数,用于描述价电子和非局部伪伪函数原子核心。我们呈现吸附结构和由吸附诱导的电子密度变化和状态的突出密度引起的粘接性的结果。我们发现吸收硫酸盐的结构取决于水分子在表面上的覆盖范围。含水金属界面处的静电电位分析提供了理解复杂潜在结构的适当框架。通过计算结果获得了通过离灭吸附和水分子的氢键的质子传递的机制。

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