Research Institute for Electronic Science, Hokkaido University , N20, W10, Kita-ku, Sapporo 001-0020, Japan.
J Am Chem Soc. 2014 Dec 10;136(49):17145-54. doi: 10.1021/ja5090749. Epub 2014 Nov 24.
Photoactive molecules that reversibly switch upon visible light irradiation are one of the most attractive targets for biological as well as imaging applications. One possible approach to prepare such photoswitches is to extend π-conjugation length of molecules and shift the absorption bands to longer wavelengths. Although several attempts have been demonstrated based on this approach for diarylethene (DAE) photoswitches, photoreactivity of the DAE derivatives is dramatically suppressed when the conjugation length is extended by connecting aromatic dyes at the side positions of aryl groups in the DAE unit. In this study, we successfully prepared a visible-light reactive DAE derivative by introducing an aromatic dye at the reactive carbon atom of the DAE unit, optimizing orbital level of each component, and controlling the mutual orientation of the aromatic dye and the DAE unit. The DAE derivative (3) undergoes a photocyclization reaction upon irradiation with 560 nm light and the closed-isomer converts to the open-ring isomer upon irradiation with 405 nm light. The high photoconversion yields (>90%) were achieved for both photocyclization and photocycloreversion reactions. The photoreactivity induced by visible light irradiation and the molecular design strategy were discussed based on theoretical calculations.
光致变色分子在可见光照射下可可逆地开关,是生物和成像应用中最具吸引力的目标之一。制备这种光开关的一种可能方法是延长分子的π共轭长度,并将吸收带移动到更长的波长。尽管已经基于这种方法对二芳基乙烯(DAE)光开关进行了几次尝试,但当通过在 DAE 单元的芳基上的侧位置连接芳族染料来延长共轭长度时,DAE 衍生物的光反应性会显著受到抑制。在本研究中,我们通过在 DAE 单元的反应性碳原子上引入芳族染料,优化每个组件的轨道能级,并控制芳族染料和 DAE 单元的相互取向,成功制备了一种可见光反应性 DAE 衍生物。DAE 衍生物(3)在 560nm 光照射下发生光环化反应,而闭合异构体在 405nm 光照射下转化为开环异构体。两种光环化和光环还原反应都实现了高的光转化率(>90%)。基于理论计算讨论了可见光照射诱导的光反应性和分子设计策略。