Peroukidis Stavros D, Lichtner Ken, Klapp Sabine H L
Institute of Theoretical Physics, Technical University Berlin, Secr. EW 7-1 Hardenbergstr. 36, D-10623 Berlin, Germany.
Soft Matter. 2015 Aug 14;11(30):5999-6008. doi: 10.1039/c5sm00903k. Epub 2015 Jun 4.
We investigate the self-organization of a binary mixture of similar sized rods and dipolar soft spheres by means of Monte-Carlo simulations. We model interparticle interactions by employing anisotropic Gay-Berne, dipolar and soft-sphere interactions. In the limit of vanishing magnetic moments we obtain a variety of fully miscible liquid crystalline phases including nematic, smectic and lamellar phases. For the magnetic mixture, we find that the liquid crystalline matrix supports the formation of orientationally ordered ferromagnetic chains. Depending on the relative size of the species the chains align parallel or perpendicular to the director of the rods forming uniaxial or biaxial nematic, smectic and lamellar phases. As an exemplary external perturbation we apply a homogeneous magnetic field causing uniaxial or biaxial ordering to an otherwise isotropic state.
我们通过蒙特卡罗模拟研究了尺寸相似的棒状粒子和偶极软球二元混合物的自组织现象。我们采用各向异性的盖伊 - 伯尔尼相互作用、偶极相互作用和软球相互作用来模拟粒子间的相互作用。在磁矩消失的极限情况下,我们获得了多种完全互溶的液晶相,包括向列相、近晶相和层状相。对于磁性混合物,我们发现液晶基质支持形成取向有序的铁磁链。根据物种的相对尺寸,这些链平行或垂直于棒状粒子的指向矢排列,形成单轴或双轴的向列相、近晶相和层状相。作为一个示例性的外部扰动,我们施加一个均匀磁场,使原本各向同性的状态产生单轴或双轴有序。