深铬移
分子内力
中胚层
材料科学
化学机械平面化
光化学
半色移
荧光
热致变色
结晶学
柱状相
液晶
纳米技术
光电子学
化学
光学
立体化学
有机化学
液晶
物理
图层(电子)
作者
Bin Mu,Tianshu Ma,Zhelin Zhang,Xiangnan Hao,Liang Wang,Jingxia Wang,Hongxia Yan,Wei Tian
标识
DOI:10.1002/chem.202300320
摘要
Most organic thermochromic fluorescent materials exhibit thermo-induced hypsochromic emission due to the formation of excimers in ordered molecular solids; however, it is still a challenge to endow them with bathochromic emission despite its significance in making up the field of thermochromism. Here, a thermo-induced bathochromic emission in columnar discotic liquid crystals is reported realized by intramolecular planarization of the mesogenic fluorophores. A three-armed discotic molecule of dialkylamino-tricyanotristyrylbenzene was synthesized, which preferred to twist out of the core plane to accommodate ordered molecular stacking in hexagonal columnar mesophases, giving rise to bright green monomer emission. However, intramolecular planarization of the mesogenic fluorophores occurred in isotropic liquid increasing the conjugation length, and as a result led to thermo-induced bathochromic emission from green to yellow light. This work reports a new concept in the thermochromic field and provides a novel strategy to achieve fluorescence tuning from intramolecular actions.
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