首页> 外文期刊>The Journal of Chemical Physics >ORIENTATIONAL BEHAVIOR OF SOLID NITROGEN AT HIGH PRESSURES INVESTIGATED BY VIBRATIONAL RAMAN SPECTROSCOPY
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ORIENTATIONAL BEHAVIOR OF SOLID NITROGEN AT HIGH PRESSURES INVESTIGATED BY VIBRATIONAL RAMAN SPECTROSCOPY

机译:振动拉曼光谱研究高压下固体氮的定向行为

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In this paper the results of an experimental study of the vibrational Raman shift of solid delta, epsilon-, and beta-nitrogen will be presented. The measurements have been performed in a diamond anvil cell, from 0.5 to 14 GPa and from 120 to 400 K. The accuracy of the spectroscopic measurements has been optimized in order to determine the Raman shift as a function of temperature on an isobar. As will be shown, measurements along an isobar are appropriate for obtaining information-about the orientational behavior of the molecules. In this study the results of beta-nitrogen will be compared with those of delta and epsilon-nitrogen. In beta-nitrogen the Raman shift as a function of pressure shows a remarkable curvature, as compared to the results in delta and epsilon-nitrogen. Also in contrast to the behavior in the other phases, in beta-nitrogen the slope of the shift versus the temperature on an isobar changes from negative to positive when the pressure is increased. It will be argued that these results might be due to a short range orientational ordering of the molecules, as predicted by recent computer simulations. This ordering might cause a resonance coupling effect, resulting in a negative effect on the Raman shift in beta-nitrogen. (C) 1996 American Institute of Physics. [References: 56]
机译:本文将介绍固体δ,ε和β氮的振动拉曼位移的实验研究结果。测量是在0.5至14 GPa和120至400 K的金刚石砧室中进行的。光谱测量的精度已得到优化,以便确定等压线上的拉曼位移与温度的关系。如将显示的,沿着等压线的测量适合于获得关于分子的定向行为的信息。在这项研究中,β-氮的结果将与δ和ε-氮的结果进行比较。与δ和ε-氮的结果相比,在β-氮中,拉曼位移作为压力的函数表现出显着的曲率。同样与其他相的行为相反,在β氮中,当压力增加时,等压线上位移相对于温度的斜率从负变为正。可以认为,这些结果可能是由于最近计算机模拟所预测的分子的短程取向性所致。该排序可能引起共振耦合效应,从而对β氮的拉曼位移产生负面影响。 (C)1996年美国物理研究所。 [参考:56]

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