首页> 外文期刊>Japanese journal of applied physics >Thermobarometry for 4'-n-Octylbiphenyl-4-carbonitrile in Metal Tube Berthelot Method and Polymorphism in Crystalline Phase of 4'-n-Octylbiphenyl-4-carbonitrile Found through Cooling Paths in Negative-Pressure Range
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Thermobarometry for 4'-n-Octylbiphenyl-4-carbonitrile in Metal Tube Berthelot Method and Polymorphism in Crystalline Phase of 4'-n-Octylbiphenyl-4-carbonitrile Found through Cooling Paths in Negative-Pressure Range

机译:金属管Berthelot方法中4'-n-辛基联苯-4-腈的热压法和通过负压范围内的冷却路径发现的4'-n-辛基联苯-4-腈的结晶相的多态性

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摘要

The Berthelot method has been used for generating negative pressure in a liquid sealed in a container by a temperature cycle. We introduce its thermodynamic principles and experimental procedures for observing the first-order phase transitions between the condensed phases of a thermotropic liquid crystal. In order to check the methodology, we measure the pressure (P) versus temperature (T) relations of 4'-n-octylbiphenyl-4-carbonitrile (8CB) sealed in a metal tube at various densities using the Berthelot method. Two results are reported: (ⅰ) the P-T phase diagram of 8CB is drawn in a triangular region bounded by three points, namely, (0.5℃, 0 bar), (55℃, +730 bar), and (75℃, 0 bar) and (ⅱ) the polymorphism of 8CB's crystalline phase is detected only by cooling paths in the negative-pressure range; two melting points immediately below 10.5 and 15.8℃, are measured for crystals formed upon cavitation in "super-expanded" smectic phase between -50 and - 110 bar, while the reported melting point, 21℃, is measured for crystals formed in the supercooled smectic phase under positive pressures. The thermobarometry of thermotropic liquid crystals is feasible by the metal tube Berthelot method, and its extension in the negative-pressure range will be interesting for the study of organic compounds.
机译:Berthelot方法已用于通过温度循环在密封在容器中的液体中产生负压。我们介绍其热力学原理和实验程序,以观察热致液晶的凝聚相之间的一阶相变。为了检查方法,我们使用Berthelot方法测量了密封在金属管中的4'-n-辛基联苯-4-腈(8CB)的压力(P)与温度(T)的关系。报告了两个结果:(ⅰ)在由(0.5℃,0 bar),(55℃,+730 bar)和(75℃,0)三个点界定的三角形区域中绘制8CB的PT相图。 bar)和(ⅱ)仅通过负压范围内的冷却路径检测到8CB晶相的多态性;在-50和-110 bar之间的“超膨胀”近晶相中,在空化时形成的晶体测得的两个熔点分别在10.5和15.8℃以下,而在过冷状态下形成的晶体测得的熔点为21℃正压下的近晶相。通过金属管Berthelot方法可以实现热致液晶的热压法,其在负压范围内的扩展对于有机化合物的研究将是有趣的。

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