Research news

IF 0.7 Q3 CRYSTALLOGRAPHY Liquid Crystals Today Pub Date : 2021-04-03 DOI:10.1080/1358314X.2021.1991702
Yuan Shen
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Abstract

B. Senyuk, A. Mozaffari, K. Crust, R. Zhang, J. J. de Pablo, and I. I. Smalyukh, Science Advances, 7, eabg0377, 2021. From foods and drinks to health and personal care products, emulsions are common but import to our daily life. Nematic emulsions composed of nematic liquid crystals and other liquids have attracted great attention due to their potential applications in many areas ranging from bio-detection to smart windows, which mainly rely on changes of molecular alignment structures around the drops in response to chemical, thermal, electric, and other stimuli. In this work, the authors 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 selfassembly or desorption of different surfactants at the drop-nematic interfaces, with ensuing forward and reverse transformations between elastic dipoles, quadrupoles, octupoles, and hexadecapoles. The authors also characterise inter-transformations 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.
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研究新闻
B.Senyuk、A.Mozaffari、K.Crust、R.Zhang、J.J.de Pablo和I.I.Smalyukh,《科学进展》,7,eabg03772021。从食品和饮料到健康和个人护理产品,乳液很常见,但对我们的日常生活很重要。由向列型液晶和其他液体组成的向列型乳液由于其在从生物检测到智能窗口的许多领域的潜在应用而引起了极大的关注,智能窗口主要依赖于液滴周围分子排列结构对化学、热、电和其他刺激的响应。在这项工作中,作者表明,微量常见表面活性剂的吸收或解吸可以驱动均匀排列向列相主体内液滴引起的弹性多极的连续转变。指向矢结构的非平衡动力学产生于不同表面活性剂在液滴-向列界面的受控自组装或脱附,以及随之而来的弹性偶极子、四极、八极和六极之间的正向和反向转换。作者还描述了液滴诱导的表面和体相缺陷的相互转化,探针-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。
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来源期刊
Liquid Crystals Today
Liquid Crystals Today CRYSTALLOGRAPHY-
CiteScore
2.80
自引率
0.00%
发文量
19
期刊最新文献
In memoriam of professor Lev Mikhailovich Blinov, 1939 – 2023 High fidelity mini-LED backlit liquid crystal displays Report on the British Liquid Crystal Society (BLCS) annual meeting, 19th-21st April 2023 In memory of Mortimer M. Labes Research news
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