Senyuk Bohdan, Mozaffari Ali, Crust Kevin, Zhang Rui, de Pablo Juan J, Smalyukh Ivan I
Department of Physics and Soft Materials Research Center, University of Colorado, Boulder, CO 80309, USA.
Pritzker School of Molecular Engineering, The University of Chicago, Chicago, IL 60637, USA.
Sci Adv. 2021 Jun 18;7(25). doi: 10.1126/sciadv.abg0377. Print 2021 Jun.
Emulsions comprising isotropic fluid drops within a nematic host are of interest for applications ranging from biodetection to smart windows, which rely on changes of molecular alignment structures around the drops in response to chemical, thermal, electric, and other stimuli. We show that absorption or desorption of trace amounts of common surfactants can drive continuous transformations of elastic multipoles induced by the droplets within the uniformly aligned nematic host. Out-of-equilibrium dynamics of director structures emerge from a controlled self-assembly or desorption of different surfactants at the drop-nematic interfaces, with ensuing forward and reverse transformations between elastic dipoles, quadrupoles, octupoles, and hexadecapoles. We characterize intertransformations of droplet-induced surface and bulk defects, probe elastic pair interactions, and discuss emergent prospects for fundamental science and applications of the reconfigurable nematic emulsions.
包含向列型主体内各向同性流体滴的乳液在从生物检测到智能窗户等各种应用中备受关注,这些应用依赖于滴周围分子排列结构响应化学、热、电和其他刺激而发生的变化。我们表明,痕量常见表面活性剂的吸收或解吸可驱动由均匀排列的向列型主体内的液滴诱导的弹性多极子的连续转变。指向矢结构的非平衡动力学源于不同表面活性剂在液滴 - 向列型界面处的受控自组装或解吸,随之在弹性偶极子、四极子、八极子和十六极子之间发生正向和反向转变。我们表征了液滴诱导的表面和体缺陷的相互转变,探测了弹性对相互作用,并讨论了可重构向列型乳液在基础科学和应用方面的新兴前景。