Cheng Aoyuan, Jiang Yifan, Su Hao, Zhang Baicheng, Jiang Jun, Wang Tao, Luo Yi, Zhang Guoqing
Hefei National Research Center for Physical Sciences at the Microscale, University of Science and Technology of China, Hefei, 230026, China.
Hefei National Laboratory University of Sciencen and Technology of China, Hefei, 230088, China.
Angew Chem Int Ed Engl. 2022 Aug 15;61(33):e202206366. doi: 10.1002/anie.202206366. Epub 2022 Jun 28.
Triphenylamine (TPA) was reported to exhibit temperature-dependent dual phosphorescence, where the red-shifted band was assigned as the excimeric phosphorescence with an energy shift of >3000 cm (J. Phys. Chem. 1991, 95, 7189). Here we show that purified TPA (purity: >99.97 %) shows a single phosphorescence band with a small energy shift of <200 cm under the same experimental conditions. The new experimental results, along with theoretical calculations, suggest that the previously reported triplet excimer of TPA is probably not valid and is most likely due to an unidentified impurity. As-received TPA samples, however, do exhibit temperature-dependent dual phosphorescence bands, and the wavelength, relative intensity, and temperature dependence of the lower-energy phosphorescence band vary significantly depending on dopant structures. It was found that dopant phosphorescence could still become dominant even in dilute third-party solutions of the host at low temperature.
据报道,三苯胺(TPA)表现出温度依赖性的双重磷光,其中红移带被指定为激基缔合物磷光,能量位移>3000 cm(《物理化学杂志》,1991年,95卷,7189页)。在此我们表明,纯化的TPA(纯度:>99.97%)在相同实验条件下显示出单一磷光带,能量位移小,<200 cm。新的实验结果以及理论计算表明,先前报道的TPA三重态激基缔合物可能无效,很可能是由于一种未鉴定的杂质。然而,收到的TPA样品确实表现出温度依赖性的双重磷光带,并且较低能量磷光带的波长、相对强度和温度依赖性根据掺杂剂结构有显著变化。发现即使在低温下主体的稀第三方溶液中,掺杂剂磷光仍可能占主导地位。