Bio-inspired and Smart Materials, MESA+ Institute for Nanotechnology, University of Twente , P.O. Box 207, 7500 AE Enschede , The Netherlands.
Department of Chemistry , Dartmouth College , 6128 Burke Laboratory , Hanover , New Hampshire 03755 , United States.
J Am Chem Soc. 2019 Jan 23;141(3):1196-1200. doi: 10.1021/jacs.8b11558. Epub 2019 Jan 9.
Interfacing molecular photoswitches with liquid crystal polymers enables the amplification of their nanoscale motion into macroscopic shape transformations. Typically, the mechanism responsible for actuation involves light-induced molecular disorder. Here, we demonstrate that bistable hydrazones can drive (chiral) shape transformations in liquid crystal polymer networks, with photogenerated polymer shapes displaying a long-term stability that mirrors that of the switches. The mechanism involves a photoinduced buildup of tension in the polymer, with a negligible influence on the liquid crystalline order. Hydrazone-doped liquid crystal systems thus diversify the toolbox available to the field of light-adaptive molecular actuators and hold promise in terms of soft robotics.
将分子光开关与液晶聚合物相结合,可以将其纳米级运动放大为宏观形状转变。通常,负责致动的机制涉及光诱导的分子无序。在这里,我们证明双稳态腙可以驱动液晶聚合物网络中的(手性)形状转变,光致聚合物形状显示出与开关相匹配的长期稳定性。该机制涉及聚合物中张力的光诱导积累,对液晶有序度的影响可以忽略不计。因此,腙掺杂液晶体系丰富了光适应分子致动器领域可用的工具包,并在手性机器人领域具有广阔的应用前景。