Luckhurst G R, Miyamoto T, Sugimura A, Timimi B A, Zimmermann H
School of Chemistry and Southampton Liquid Crystal Institute, University of Southampton, Southampton SO17 1BJ, UK.
J Chem Phys. 2004 Jul 22;121(4):1928-37. doi: 10.1063/1.1764774.
We have investigated the oscillatory behavior of the nematic director for 4-pentyl-4'-cyanobiphenyl (5CB) when it is subjected to a static magnetic field and a sinusoidal electric field. In these experiments the two fields were inclined at about 50 degrees and the frequency of the electric field was varied from several hertz to approximately 1000 Hz. The director orientation was measured using time-resolved deuterium NMR spectroscopy since this has the advantage of being able to determine the state of director alignment in the sample. In fact, for all of the frequencies studied the director is found to remain uniformly aligned. Since the diamagnetic and dielectric anisotropies are both positive the director oscillates in the plane formed by the two fields. These oscillations were observed to continue for many cycles, indicating that the coherence in the director orientation was not lost during this motion. The maximum and minimum angles made by the director with the magnetic field were determined, as a function of frequency, from the NMR spectrum averaged over many thousand cycles of the oscillations. At low frequencies (several hertz) these limiting angles are essentially independent of frequency but as the frequency increases the two angles approach each other and become equal at high frequencies, typically 1000 Hz. Our results are well explained by a hydrodynamic theory in which the sinusoidal time dependence of the electric field is included in the torque-balance equation. This analysis also shows that, for a range of frequencies between the high and low limits, these NMR experiments can give dynamic as well as static information concerning the nematic phase.
我们研究了4-戊基-4'-氰基联苯(5CB)在施加静磁场和正弦电场时向列型指向矢的振荡行为。在这些实验中,两个场的夹角约为50度,电场频率从几赫兹变化到约1000赫兹。使用时间分辨氘核磁共振光谱法测量指向矢方向,因为它具有能够确定样品中指向矢排列状态的优势。事实上,在所研究的所有频率下,发现指向矢保持均匀排列。由于抗磁各向异性和介电各向异性均为正值,指向矢在由两个场形成的平面内振荡。观察到这些振荡持续了许多个周期,这表明在该运动过程中指向矢方向的相干性没有丧失。根据振荡数千个周期的平均核磁共振谱,确定了指向矢与磁场形成的最大和最小角度作为频率的函数。在低频(几赫兹)时,这些极限角度基本上与频率无关,但随着频率增加,这两个角度相互接近并在高频(通常为1000赫兹)时变得相等。我们的结果可以用一种流体动力学理论很好地解释,该理论在扭矩平衡方程中包含了电场的正弦时间依赖性。该分析还表明,对于高低限之间的一系列频率,这些核磁共振实验可以给出有关向列相的动态和静态信息。