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高压高温下液氨二水合物的声速、折射率和状态方程。

The acoustic velocity, refractive index, and equation of state of liquid ammonia dihydrate under high pressure and high temperature.

机构信息

State Key Laboratory of Superhard Materials, Jilin University, Changchun, 130012 People's Republic of China.

出版信息

J Chem Phys. 2012 Sep 14;137(10):104504. doi: 10.1063/1.4751944.

Abstract

High-pressure and high-temperature Brillouin scattering studies have been performed on liquid of composition corresponding to the ammonia dihydrate stoichiometry (NH(3)·2H(2)O) in a diamond anvil cell. Using the measured Brillouin frequency shifts from 180° back- and 60° platelet-scattering geometries, the acoustic velocity, refractive index, density, and adiabatic bulk modulus have been determined under pressure up to freezing point along the 296, 338, 376, and 407 K isotherms. Along these four isotherms, the acoustic velocities increase smoothly with increasing pressure but decrease with the increased temperature. However, the pressure dependence of the refractive indexes on the four isotherms exhibits a change in slope around 1.5 GPa. The bulk modulus increases linearly with pressure and its slope, dB/dP, decreases from 6.83 at 296 K to 4.41 at 407 K. These new datasets improve our understanding of the pressure- and temperature-induced molecular structure changes in the ammonia-water binary system.

摘要

高压高温布里渊散射研究已经在金刚石压腔中对组成对应于氨二水合物化学计量比(NH(3)·2H(2)O)的液体进行了。通过测量 180°背散射和 60°板状散射几何的布里渊频率位移,在沿 296、338、376 和 407 K 等焓线的冰点以下压力下确定了声速、折射率、密度和绝热体弹性模量。在这四条等焓线上,声速随压力的增加而平滑增加,但随温度的升高而降低。然而,四条等焓线上折射率的压力依赖性在约 1.5 GPa 处表现出斜率的变化。体弹性模量随压力线性增加,其斜率 dB/dP 从 296 K 时的 6.83 减小到 407 K 时的 4.41。这些新数据集提高了我们对氨-水二元体系中压力和温度引起的分子结构变化的理解。

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