Dvinskikh S V, Furó I, Zimmermann H, Maliniak A
Division of Physical Chemistry, Arrhenius Laboratory, Stockholm University, SE-10691 Stockholm, Sweden.
Phys Rev E Stat Nonlin Soft Matter Phys. 2002 Jun;65(6 Pt 1):061701. doi: 10.1103/PhysRevE.65.061701. Epub 2002 Jun 10.
The molecular self-diffusion coefficients in nematic and smectic-A thermotropic liquid crystals are measured using stimulated-echo-type 2H and 1H pulse-field-gradient spin-echo nuclear magnetic resonance (PGSE NMR) combined with multiple-pulse dipolar decoupling and slice selection. The temperature dependence of the principal components of the diffusion tensor in the nematic phase follows a simple Arrhenius relationship except in the region of nematic-isotropic phase transition where it reflects, merely, the decrease of the molecular orientational order. The average of the principal diffusion coefficients in the isotropic-nematic phase transition region is close to the diffusion coefficient in the isotropic phase. At the nematic-smectic-A phase transition the diffusion coefficients change continuously. The results in nematic phase are best described in terms of the affine transformation model for diffusion in nematics formed by hard ellipsoids. In the smectic-A phase the data are interpreted using a modified model for diffusion in presence of a periodic potential along the director.
利用受激回波型2H和1H脉冲场梯度自旋回波核磁共振(PGSE NMR)结合多脉冲偶极去耦和切片选择,测量了向列相和近晶A相热致液晶中的分子自扩散系数。向列相扩散张量主分量的温度依赖性遵循简单的阿仑尼乌斯关系,但在向列相-各向同性相转变区域除外,在该区域它仅反映分子取向有序度的降低。各向同性-向列相转变区域主扩散系数的平均值接近各向同性相中的扩散系数。在向列相-近晶A相转变时,扩散系数连续变化。向列相的结果用硬椭球体形成的向列相中扩散的仿射变换模型能得到最佳描述。在近晶A相中,数据用沿指向矢存在周期性势时扩散的修正模型来解释。