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Ab initio statistical mechanics of surface adsorption and desorption. I. H2O on MgO (001) at low coverage

机译:表面吸附和解吸的从头算统计力学。 I.MgO(001)上的H2O低覆盖

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We present a general computational scheme based on molecular dynamics (MD) simulation for calculating the chemical potential of adsorbed molecules in thermal equilibrium on the surface of a material. The scheme is based on the calculation of the mean force in MD simulations in which the height of a chosen molecule above the surface is constrained and subsequent integration of the mean force to obtain the potential of mean force and hence the chemical potential. The scheme is valid at any coverage and temperature, so that in principle it allows the calculation of the chemical potential as a function of coverage and temperature. It avoids all statistical mechanical approximations, except for the use of classical statistical mechanics for the nuclei, and assumes nothing in advance about the adsorption sites. From the chemical potential, the absolute desorption rate of the molecules can be computed, provided that the equilibration rate on the surface is faster than the desorption rate. We apply the theory by ab initio MD simulation to the case of H2O on MgO (001) in the low-coverage limit, using the Perdew-Burke-Ernzerhof (PBE) form of exchange correlation. The calculations yield an ab initio value of the Polanyi-Wigner frequency prefactor, which is more than two orders of magnitude greater than the value of 10(13) s(-1) often assumed in the past. Provisional comparison with experiment suggests that the PBE adsorption energy may be too low, but the extension of the calculations to higher coverages is needed before firm conclusions can be drawn. The possibility of including quantum nuclear effects by using path-integral simulations is noted. (c) 2007 American Institute of Physics.
机译:我们提出了一种基于分子动力学(MD)模拟的通用计算方案,用于计算材料表面热平衡中吸附分子的化学势。该方案基于在MD模拟中平均力的计算,在该模拟中,选定分子在表面上方的高度受到限制,并且随后对该平均力进行积分以获得平均力的电势,从而获得化学势。该方案在任何覆盖范围和温度下均有效,因此原则上它可以根据覆盖范围和温度来计算化学势。除了对核使用经典的统计力学外,它避免了所有的统计力学近似,并且对吸附位点没有任何事先假设。根据化学势,可以计算分子的绝对解吸速率,只要表面上的平衡速率快于解吸速率即可。我们使用交换相关性的Perdew-Burke-Ernzerhof(PBE)形式,通过从头算MD模拟将理论应用于低覆盖范围内MgO(001)上的H2O情况。计算得出Polanyi-Wigner频率前置因子的从头算值,该值比过去通常假定的10(13)s(-1)值大两个数量级。与实验的临时比较表明,PBE的吸附能可能太低,但是在得出确切结论之前,需要将计算扩展到更高的覆盖率。指出了通过使用路径积分模拟来包括量子核效应的可能性。 (c)2007年美国物理研究所。

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