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INELASTIC NEUTRON SCATTERING STUDIES OF HYDROGEN BONDING IN ICES

机译:冰中氢键的弹性中子散射研究

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Using high resolution inelastic neutron scattering measurements of the phonon density of states of ice, two separate molecular optic bands at about 28 and 37 meV for ice Ih-and ice Ic have been observed, which is the direct result of the very high flux of pulsed neutron source and excellent energy resolution of the inelastic instruments on ISIS at the Rutherford-Appleton Laboratory. In order to reproduce the measured phonon density of states, a new lattice dynamic model has been proposed that two interaction strengths among the H bonds in ice Ih (and ice Ic) associated with the proton configurations have to be assumed. These two force constants are randomly distributed in the network of ice, having a ratio of almost 1:2. This model is capable of reproducing almost every aspect of the measured spectra, the two molecular peaks in 28 and 37 meV in particular and may provide insight into the complex nature of H bonding in ice and water. The large differences in the force constants between the strong and weak H bonds in a disordered ice structure as required by the model would affect the physical and chemical properties of ice and water and could have broader implications. In this paper, we illustrate a complete measurement for all possible recovered high-pressure forms of ice, including ice I, II, IX, V, VI, VII, VIII, and high-/low-density amorphous ice. These measurements demonstrate that the two well-separated molecular bands are associated with the local configurations configurations of protons, which have quite different interaction strengths. (C) 1996 American Institute of Physics. [References: 77]
机译:使用高分辨率非弹性中子散射测量冰的声子密度,观察到冰Ih和冰Ic分别在28和37 meV处出现两个单独的分子光学带,这是脉冲高通量的直接结果拉瑟福德-阿普尔顿实验室在ISIS上使用非弹性仪器获得中子源和出色的能量分辨率。为了再现测得的声子密度,提出了一种新的晶格动力学模型,其中必须假设与质子构型相关的冰Ih(和冰Ic)中的H键之间的两个相互作用强度。这两个力常数随机分布在冰网中,比率几乎为1:2。该模型能够重现所测量光谱的几乎每个方面,特别是28和37 meV的两个分子峰,并且可以提供对冰和水中H键的复杂性质的洞察力。模型要求的无序冰结构中,强H键和弱H键之间的力常数存在较大差异,这将影响冰和水的物理和化学性质,并可能产生更广泛的影响。在本文中,我们说明了对所有可能的高压冰形式的完整测量,包括冰I,II,IX,V,VI,VII,VIII和高/低密度无定形冰。这些测量结果表明,两个良好分离的分子带与质子的局部构型相关,而质子的构型具有非常不同的相互作用强度。 (C)1996年美国物理研究所。 [参考:77]

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