掺杂剂
偶氮苯
材料科学
液晶
胆甾液晶
化学物理
结晶学
手性(物理)
热致变色
色散(光学)
红外线的
光化学
纳米技术
晶体结构
Crystal(编程语言)
兴奋剂
圆二色性
光电子学
发色团
电子转移
芯(光纤)
红外光谱学
光学材料
作者
Brandon Balamut,Kai Hanke,ivan aprahamian
标识
DOI:10.1002/anie.202520563
摘要
Abstract The noncovalent interactions in cholesteric liquid crystals (CLCs) can be modulated using switchable chiral dopants resulting in the phototuning of the reflected structural color. The nature of the interactions between the CLC and dopant, and how the latter can effectively transfer chiral information to the former is still somewhat of a black box. To gain insights into the nature of these interactions, we conducted structure–property analysis of five photoswitchable chiral dopants comprised of triptycene as the chiral core and azobenzene as the switchable unit. Our findings show that this combination results in high (e.g., 127 µm −1 ) helical twisting power ( β ) values (i.e., extent of chiral information transfer between dopant and host), with dispersion interactions and/or electron deficient aromatic units playing a crucial role in determining the value. The large change in β values upon E/Z photoswitching enabled us to devise multicolor, high contrast LC films that reflect across the UV to infrared light range.
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