材料科学
液晶
光稳态
中胚层
相变
化学物理
掺杂剂
相(物质)
分子间力
分子
波长
热致变色
衍射
各向同性
偶氮苯
兴奋剂
Crystal(编程语言)
光异构化
结晶学
混溶性
胆甾液晶
光电子学
激光阈值
自愈水凝胶
液晶显示器
纳米技术
作者
Tobias Thiele,Kristina Hrybenko,Christoph Wölper,Michael Giese
标识
DOI:10.1002/adfm.202521709
摘要
Abstract The development of responsive molecules enables the design of novel smart materials for numerous applications. A series of new arylazopyrazoles is designed as dopants for commercially available liquid crystal hosts and their photoresponse in solution and mesophases is investigated. Furthermore, the solid‐state structure in single‐crystal diffraction is analyzed to gain insight into possible intermolecular interactions of the photoswitches with LC host materials, thus anticipating the effect of photoswitching in the LC phase. Additionally, 3,5‐difluorophenol is implemented as a hydrogen‐bond donor to tune the impact of the photoisomers on the mesogenic behavior. Unprecedented, reversible control of the distribution of E ‐ and Z ‐isomers at the photostationary state of different wavelengths (365, 460, and 520nm) is utilized to induce phase transitions of liquid crystals. This strategy allows for the controlled transition between smectic, nematic, and isotropic phases at isothermic conditions by irradiation with the corresponding wavelength ‐ a new concept in the design of photoresponsive materials.
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