Emelyanenko A V, Osipov M A
Department of Mathematics, University of Strathclyde, 26 Richmond St., Glasgow G1 1XH, United Kingdom and Department of Physics, Moscow State University, Moscow 119992, Russia.
Phys Rev E Stat Nonlin Soft Matter Phys. 2004 Aug;70(2 Pt 1):021704. doi: 10.1103/PhysRevE.70.021704. Epub 2004 Aug 31.
A simple molecular model is proposed for novel bent-core smectic phases that enables one to explain the origin of the experimentally observed chiral structure of the B2 phase composed of nonchiral banana-shaped molecules. It is shown that in the perfectly ordered smectic phase the distributed dispersion interaction between banana-shaped molecules stabilizes the spontaneous polarization and may be responsible for the tilt of the director. The orientation of the spontaneous polarization with respect to the tilt plane is determined by the balance between the dispersion and electrostatic dipole-dipole intermolecular interactions. In particular, sufficiently strong dipole-dipole interaction promotes the B2 phase where the polarization is normal to the tilt plane. The actual chiral structure of each smectic layer in the B2 phase appears as a result of the symmetry breaking. In the case of small molecular dipoles the nonchiral polar smectic phase is formed where the spontaneous polarization is parallel to the tilt plane. The role of the opening angle and of the axial ratio of banana-shaped molecules is also considered and a phase diagram is presented.
针对新型弯曲核近晶相提出了一种简单的分子模型,该模型能够解释由非手性香蕉形分子组成的B2相的实验观测到的手性结构的起源。结果表明,在完美有序的近晶相中,香蕉形分子之间分布的色散相互作用稳定了自发极化,并可能导致指向矢的倾斜。自发极化相对于倾斜平面的取向由色散和静电偶极-偶极分子间相互作用之间的平衡决定。特别地,足够强的偶极-偶极相互作用促进了极化垂直于倾斜平面的B2相的形成。B2相中每个近晶层的实际手性结构是对称性破缺的结果。在小分子偶极的情况下,形成了自发极化平行于倾斜平面的非手性极性近晶相。还考虑了香蕉形分子的开口角和轴比的作用,并给出了相图。