Takeda Takashi, Kasahara Yotaro, Akutagawa Tomoyuki
Institute of Multidisciplinary Research for Advanced Materials, Tohoku University Katahira 2-1-1, Aoba-ku Sendai 980-8577 Japan
Department of Applied Chemistry, Graduate School of Engineering, Tohoku University Sendai Miyagi 980-8579 Japan.
RSC Adv. 2021 Jul 9;11(39):24217-24231. doi: 10.1039/d1ra03985g. eCollection 2021 Jul 6.
We prepared a series of arylaminoanthraquinone derivatives, including those with electron-accepting sulfone units and/or with electron-donating dialkylamino units. A color-tunable anthraquinone library that reached into the NIR region could be prepared through the precise control of frontier orbitals. Fine color-tuning was achieved through proper selection and positioning of the substituents. Effective intramolecular hydrogen-bond-assisted charge transfer interaction between electron-donating aniline/-phenylenediamine and electron-accepting anthraquinone substructures induced a significant bathochromic shift of anthraquinone. The number and position of the substituents and the molecular conformation also significantly contributed to determining photophysical properties.
我们制备了一系列芳基氨基蒽醌衍生物,包括带有吸电子砜单元和/或给电子二烷基氨基单元的衍生物。通过对前沿轨道的精确控制,可以制备出延伸至近红外区域的颜色可调蒽醌库。通过适当选择和定位取代基实现了精细的颜色调节。给电子苯胺/对苯二胺与吸电子蒽醌亚结构之间有效的分子内氢键辅助电荷转移相互作用导致蒽醌发生显著的红移。取代基的数量和位置以及分子构象对光物理性质的确定也有显著贡献。