Hashemi S Masoomeh, Ejtehadi Mohammad Reza
Department of Physics, Sharif University of Technology, P. O. Box 11155-9161, Tehran, Iran.
Phys Rev E Stat Nonlin Soft Matter Phys. 2015 Jan;91(1):012503. doi: 10.1103/PhysRevE.91.012503. Epub 2015 Jan 9.
A continuum theory is employed to numerically study the equilibrium orientation and defect structures of a circular cylindrical particle with flat ends under a homeotropic anchoring condition in a uniform nematic medium. Different aspect ratios of this colloidal geometry from thin discotic to long rodlike shapes and several colloidal length scales ranging from mesoscale to nanoscale are investigated. We show that the equilibrium state of this colloidal geometry is sensitive to the two geometrical parameters: aspect ratio and length scale of the particle. For a large enough mesoscopic particle, there is a specific asymptotic equilibrium angle associated to each aspect ratio. Upon reducing the particle size to nanoscale, the equilibrium angle follows a descending or ascending trend in such a way that the equilibrium angle of a particle with the aspect ratio bigger than 1:1 (a discotic particle) goes to a parallel alignment with respect to the far-field nematic, whereas the equilibrium angle for a particle with the aspect ratio 1:1 and smaller (a rodlike particle) tends toward a perpendicular alignment to the uniform nematic direction. The discrepancy between the equilibrium angles of the mesoscopic and nanoscopic particles originates from the significant differences between their defect structures. The possible defect structures related to mesoscopic and nanoscopic colloidal particles of this geometry are also introduced.
采用连续介质理论对均匀向列相介质中在垂直锚定条件下具有平端的圆柱形粒子的平衡取向和缺陷结构进行数值研究。研究了这种胶体几何形状从薄盘状到长棒状的不同纵横比以及从介观尺度到纳米尺度的几种胶体长度尺度。我们表明,这种胶体几何形状的平衡状态对两个几何参数敏感:粒子的纵横比和长度尺度。对于足够大的介观粒子,每个纵横比都有一个特定的渐近平衡角。当将粒子尺寸减小到纳米尺度时,平衡角呈现下降或上升趋势,使得纵横比大于1:1的粒子(盘状粒子)的平衡角相对于远场向列相变为平行排列,而纵横比为1:1及更小的粒子(棒状粒子)的平衡角趋于与均匀向列相方向垂直排列。介观粒子和纳米粒子平衡角之间的差异源于它们缺陷结构的显著不同。还介绍了与这种几何形状的介观和纳米胶体粒子相关的可能缺陷结构。