Williamson David C, Thacker Neil A, Williams Stephen R
Imaging Science and Biomedical Engineering, Stopford Building, University of Manchester, Oxford Road, Manchester M13 9PT, United Kingdom.
Phys Rev E Stat Nonlin Soft Matter Phys. 2005 Feb;71(2 Pt 1):021702. doi: 10.1103/PhysRevE.71.021702. Epub 2005 Feb 8.
The thermodynamics of a simple model, containing the minimum set of features required to provide liquid crystal-like phase behavior and the dipolar coupling observable in the NMR spectrum of orientationally ordered fluids, are presented within the framework of Onsager theory. The model comprises a fluid of hard spherocylinders with a pair of embedded freely rotating magnetic dipoles. The behavior of the isotropic-nematic phase transition is explored as a function magnetic field strength and of the relative orientation between the nematic director and the external magnetic field. When the field and director are aligned the phase diagram is similar to those predicted for a hard rod fluid in flow fields, electric fields, and magnetic fields, with the field promoting orientational order in the fluid and the isotropic-nematic phase transition being replaced by a paranematic-nematic phase transition. In contrast, when the field and director are perpendicular, the field destabilizes the nematic phase and the phase transition is shifted to higher densities. The variation of the mean magnetic moment and the dipolar coupling are examined as a function of the orientational structure of the fluid. The model is used to support the hypothesis that dipolar couplings observed in the spectra of human leg muscle originate from nematic-like liquid crystal phases in relatively small metabolite molecules. The fitted theoretical predictions of the dependence of the dipolar coupling on the orientation of the field with respect to the nematic director are shown to provide a good description of the experimental data.
在昂萨格理论框架内,提出了一个简单模型的热力学,该模型包含提供液晶状相行为和取向有序流体核磁共振谱中可观测到的偶极耦合所需的最小特征集。该模型由具有一对嵌入的自由旋转磁偶极子的硬球柱体流体组成。研究了各向同性-向列相转变行为与磁场强度以及向列指向矢与外部磁场之间相对取向的函数关系。当磁场与指向矢对齐时,相图类似于在流场、电场和磁场中硬棒流体所预测的相图,磁场促进流体中的取向有序,各向同性-向列相转变被顺磁向列相转变所取代。相反,当磁场与指向矢垂直时,磁场会使向列相不稳定,相转变会转移到更高密度。研究了平均磁矩和偶极耦合随流体取向结构的变化。该模型用于支持这样的假设,即在人类腿部肌肉光谱中观察到的偶极耦合源自相对较小代谢物分子中的类向列液晶相。偶极耦合对磁场相对于向列指向矢取向的依赖性的拟合理论预测被证明能很好地描述实验数据。