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Applying Semi-Empirical Quantum Harmonic Calculations for Studying the Atomic Kinetic Energies in Hydrogen Bonded Systems

机译:应用半经验量子谐波计算研究氢粘结系统中原子动力学的研究

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The use of the semi empirical (SE) quantum harmonic approach for calculating the proton's mean kinetic energy, Ke(H), of systems containing hydrogen bonds (HB), is reviewed. The value of Ke(H) provides very interesting information on the proton dynamics, anharmonicity, and quantum effects. This method uses the IR/Raman and inelastic neutron scattering frequencies of the system as input data and assumes the harmonic approximation. The systems studied encompass a wide range of HBs strengths, from weak occurring in e.g. pure H_2O phases and Silanol groups, via moderate, as in ferro-electric KDP-type crystals, to strong ones as in highly compressed ice VII and the superprotonic Rb_3H(SO_4)_2 conductor. The comparison of SE results with electron (ECS) and neutron (NCS) Compton scattering measurements revealed many cases of very good agreements. In recent years, however, unusual Ke(H) values, using NCS, were reported in confined water within ≤ 20 ? size cavities such as in carbon nanotubes (CNTs) and in Beryl crystal. The Ke(H) values were found to depart strongly from those of the non-confined water. In an attempt to understand those anomalies, SE study was carried out, focusing on nano-confined samples meeting the ≤ 20? size criteria, including carbon nanotubes, Beryl and Bikitaite. These calculations failed to reproduce the NCS anomalies. Possible sources for the discrepancies were discussed and further research to reconcile this open question was proposed.
机译:综述了使用用于计算质子的平均动能,含有氢键(HB)的质子的平均动能,Ke(H)的SEMI经验(SE)量子谐波方法。 KE(h)的值提供了关于质子动力学,anharmonicity和量子效应的非常有趣的信息。该方法使用系统的IR /拉曼和非弹性中子散射频率作为输入数据,并呈现谐波近似。研究的系统包括广泛的HBS强度,从而从弱发生的情况下发生。纯H_2O阶段和硅烷醇基团,通过中等,如在铁 - 电KDP型晶体中,以强度压缩冰VII和超级化RB_3H(SO_4)_2导体中的强子。 SE结果与电子(ECS)和中子(NCS)康顿散射测量的比较揭示了许多非常好的协议的情况。然而,近年来,使用NCS的异常KE(H)值在≤20内的狭窄水中报告?尺寸腔如碳纳米管(CNT)和Beryl晶体中的腔。发现ke(h)值从非限制性水的强烈偏离。为了试图了解那些异常,SE研究进行了研究,重点关注纳米限制样品,满足≤20?尺寸标准,包括碳纳米管,Beryl和Bikitaite。这些计算未能重现NCS异常。讨论了差异的可能源,并提出了对协调这一开放问题的进一步研究。

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