de Miguel Enrique, Martín del Río Elvira, Blas Felipe J
Departamento de Física Aplicada, Facultad de Ciencias Experimentales, Universidad de Huelva, 21071 Huelva, Spain.
J Chem Phys. 2004 Dec 8;121(22):11183-94. doi: 10.1063/1.1810472.
We present a detailed computer simulation study of the phase behavior of the Gay-Berne liquid crystal model with molecular anisotropy parameter kappa=4.4. According to previous investigations: (i) this model exhibits isotropic (I), smectic-A (Sm-A), and smectic-B (Sm-B) phases at low pressures, with an additional nematic (N) phase between the I and Sm-A phases at sufficiently high pressures; (ii) the range of stability of the Sm-A phase turns out to be essentially constant when varying the pressure, whereas other investigations seem to suggest a pressure-dependent Sm-A range; and (iii) the range of stability of the Sm-B phase remains unknown, as its stability with respect to the crystal phase has not been previously considered. The results reported here do show that the Sm-A phase is stable over a limited pressure range, and so it does not extend to arbitrarily low or high pressures. This is in keeping with previous investigations of the effect of molecular elongation on the phase behavior of Gay-Berne models. A detailed study of the melting transition at various pressures shows that the low-temperature crystalline phase melts into an isotropic liquid at very low pressures, and into a nematic liquid at very high pressures. At intermediate pressures, the crystal melts into a Sm-A liquid and no intermediate Sm-B phase is observed. On the basis of this and previous investigations, the reported Sm-B phase for Gay-Berne models appears to be a molecular solid rather than a smectic liquid phase.
我们对分子各向异性参数κ = 4.4的盖伊 - 伯恩液晶模型的相行为进行了详细的计算机模拟研究。根据先前的研究:(i)该模型在低压下呈现各向同性(I)、近晶A(Sm - A)和近晶B(Sm - B)相,在足够高的压力下,在I相和Sm - A相之间还有一个向列相(N);(ii)当改变压力时,Sm - A相的稳定范围基本保持不变,而其他研究似乎表明Sm - A相的范围与压力有关;(iii)Sm - B相的稳定范围仍然未知,因为之前尚未考虑其相对于晶相的稳定性。这里报道的结果确实表明Sm - A相在有限的压力范围内是稳定的,因此它不会延伸到任意低或高的压力。这与先前关于分子伸长对盖伊 - 伯恩模型相行为影响的研究一致。对不同压力下的熔化转变进行的详细研究表明,低温晶相在非常低的压力下熔化为各向同性液体,在非常高的压力下熔化为向列液体。在中等压力下,晶体熔化为Sm - A液体,未观察到中间的Sm - B相。基于此以及先前的研究,盖伊 - 伯恩模型中报道的Sm - B相似乎是一种分子固体而非近晶液相。