Center for Supramolecular Optoelectronic Materials, Department of Materials Science and Engineering, Seoul National University, ENG 445 Seoul 151-744 (Korea).
Angew Chem Int Ed Engl. 2015 Mar 27;54(14):4330-3. doi: 10.1002/anie.201411568. Epub 2015 Feb 6.
Highly efficient red-green-blue (RGB) tricolor luminescence switching was demonstrated in a bicomponent solid film consisting of (2Z,2'Z)-2,2'-(1,4-phenylene)bis(3-(4-butoxyphenyl)acrylonitrile) (DBDCS) and (2Z,2'Z)-3,3'-(2,5-bis(6-(9H-carbazol-9-yl)hexyloxy)-1,4-phenylene)bis(2-(3,5-bis(trifluoromethyl)phenyl)acrylonitrile) (m-BHCDCS). Reversible RGB luminescence switching with a high ratiometric color contrast (λ(em)=594, 527, 458 nm for red, green, and blue, respectively) was realized by different external stimuli such as heat, solvent vapor exposure, and mechanical force. It was shown that Förster resonance energy transfer in the bicomponent mixture could be efficiently switched on and off through supramolecular control.
在由(2Z,2'Z)-2,2'-(1,4-亚苯基)双(3-(4-丁氧基苯基)丙烯腈)(DBDCS)和(2Z,2'Z)-3,3'-(2,5-双(6-(9H-咔唑-9-基)己氧基)-1,4-亚苯基)双(2-(3,5-双(三氟甲基)苯基)丙烯腈)(m-BHCDCS)组成的双组分固态薄膜中,演示了高效的红-绿-蓝(RGB)三色发光切换。通过不同的外部刺激,如热、溶剂蒸气暴露和机械力,可以实现具有高比率颜色对比度(λ(em)=594、527、458 nm 分别为红色、绿色和蓝色)的可逆 RGB 发光切换。结果表明,通过超分子控制可以有效地开启和关闭双组分混合物中的Förster 共振能量转移。