Fontaine-Vive Fabien, Johnson Mark R, Kearley Gordon J, Howard Judith A K, Parker Stewart F
Institut Laue Langevin, BP156, 38042 Grenoble Cedex 9, France.
J Am Chem Soc. 2006 Mar 8;128(9):2963-9. doi: 10.1021/ja0569712.
Recent neutron diffraction data have shown that the hydrogen atom involved in the short, strong hydrogen bond in urea-phosphoric acid migrates toward the midpoint of the hydrogen bond as the temperature increases. With the help of solid state ab initio calculations and inelastic neutron scattering, we have investigated the temperature dependence of the structural and vibrational properties of the system. The potential energy surface of the proton in the short, strong hydrogen bond and the thermal population of the energy levels therein cannot account for the observed proton migration. Ab initio molecular dynamics simulations clearly reveal the migration of the proton. This molecular dynamics result was reported recently by other authors, but they only offered a tentative explanation in terms of a resonance between high-frequency vibrations, which is not supported by the calculations presented here. We explain the proton migration in terms of phonon-driven structural fluctuations and their impact on the temperature-dependent evolution of the potential energy surface of the short hydrogen-bond proton.
最近的中子衍射数据表明,随着温度升高,尿素 - 磷酸中短而强的氢键所涉及的氢原子会向氢键中点迁移。借助固态从头算计算和非弹性中子散射,我们研究了该体系结构和振动性质的温度依赖性。短而强的氢键中质子的势能面及其能级的热占据情况无法解释所观察到的质子迁移现象。从头算分子动力学模拟清楚地揭示了质子的迁移。其他作者最近报道了这一分子动力学结果,但他们仅从高频振动之间的共振角度给出了一个试探性解释,而本文所做的计算并不支持这一解释。我们从声子驱动的结构涨落及其对短氢键质子势能面温度依赖性演化的影响方面来解释质子迁移现象。