Sakanoue Haruka, Sohn Woon Yong, Katayama Kenji
Department of Applied Chemistry, Chuo University, Tokyo 112-8551, Japan.
PRESTO, Japan Science and Technology Agency (JST), Kawaguchi 332-0012, Saitama, Japan.
ACS Omega. 2019 Aug 14;4(9):13936-13942. doi: 10.1021/acsomega.9b01611. eCollection 2019 Aug 27.
Topological defects in liquid crystals (LCs) have been intensively studied and intentionally generated in an organized way recently because they could control the alignment and motion of LCs. We studied how the topological defects could change the molecular orientation/alignment from the observation of photo-induced orientation change of a photo-responsive LC. The photo-induced dynamics was observed by an LED-induced time-resolved polarization/phase microscopy with white light illumination. From the color image sequence, we found that the molecular orientation change started from the topological defects and the orientation change propagated as a pair of defects and was connected, and further disordering was induced as a next step after the initial orientation change finished.
液晶(LCs)中的拓扑缺陷最近受到了深入研究,并以有组织的方式被有意生成,因为它们可以控制液晶的排列和运动。我们通过观察光响应液晶的光致取向变化,研究了拓扑缺陷如何改变分子取向/排列。通过白光照明的LED诱导时间分辨偏振/相显微镜观察光致动力学。从彩色图像序列中,我们发现分子取向变化从拓扑缺陷开始,取向变化以一对缺陷的形式传播并连接,并且在初始取向变化完成后的下一步会诱导进一步的无序化。