论文标题

弹性胶体单极和液晶中可重新配置的自组装

Elastic colloidal monopoles and reconfigurable self-assembly in liquid crystals

论文作者

Yuan, Ye, Liu, Qingkun, Senyuk, Bohdan, Smalyukh, Ivan I.

论文摘要

单极样静电相互作用在生物学和凝结物中无处不在,但通常会被反离子筛选,无法从吸引力转向排斥。在胶体科学中,主要目标是开发模仿并超过原子和分子组件的多样性和长度尺度的胶体颗粒,静电电荷的颗粒不能改变其表面电荷的迹象或从单极管转换为高阶多尔尔。在液晶胶体中,出现颗粒之间的弹性相互作用是为了最大程度地减少与粒子周围杆状分子长距离比对相关的自由能。在偶极,四极和六核近似列胶体中,这种弹性畸变的对称性都模仿了静电多物和最大的原子壳。在此类胶体中已经证明了电和磁切换,自发转换和弹性多物的光学控制及其与拓扑缺陷和表面边界条件的相互作用。然而,长期以来,由于它们诱导的弹性扭矩,弹性单孔应放松到均匀或高阶多极状态。在这里,我们开发了具有强弹性单极力矩的列胶体,并具有通过环境光施加的光学扭矩平衡的弹性扭矩。我们通过非结构化的光与这些胶体颗粒的单极到四极重新配置,这类似于基态和各种激发态之间的原子驱动。我们表明,弹性单孔的迹象可以切换,并且类似的单极吸引人吸引,而与静电相反,带有电荷的单孔排斥。我们还展示了这些胶体颗粒的不平衡动态组件。

Monopole-like electrostatic interactions are ubiquitous in biology and condensed matter, but they are often screened by counter-ions and cannot be switched from attractive to repulsive. In colloidal science, where the prime goal is to develop colloidal particles that mimic and exceed the diversity and length-scales of atomic and molecular assembly, electrostatically charged particles cannot change the sign of their surface charge or transform from monopoles to higher-order multipoles. In liquid-crystal colloids, elastic interactions between particles arise to minimize the free energy associated with elastic distortions in the long-range alignment of rod-like molecules around the particles. In dipolar, quadrupolar and hexadecapolar nematic colloids, the symmetries of such elastic distortions mimic both electrostatic multipoles and the outmost occupied electron shells of atoms. Electric and magnetic switching, spontaneous transformations and optical control of elastic multipoles, as well as their interactions with topological defects and surface boundary conditions, have been demonstrated in such colloids. However, it has long been understood that elastic monopoles should relax to uniform or higher-order multipole states because of the elastic torques that they induce. Here we develop nematic colloids with strong elastic monopole moments and with elastic torques balanced by optical torques exerted by ambient light. We demonstrate the monopole-to-quadrupole reconfiguration of these colloidal particles by unstructured light, which resembles the driving of atoms between the ground state and various excited states. We show that the sign of the elastic monopoles can be switched, and that like-charged monopoles attract whereas oppositely charged ones repel, unlike in electrostatics. We also demonstrate the out-of-equilibrium dynamic assembly of these colloidal particles.

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