TY - JOUR
T1 - Achieving Dual Persistent Room-Temperature Phosphorescence from Polycyclic Luminophores via Inter-/Intramolecular Charge Transfer
AU - Li, Feiyang
AU - Guo, Song
AU - Qin, Yanyan
AU - Shi, Yuxiang
AU - Han, Meiping
AU - An, Zhongfu
AU - Liu, Shujuan
AU - Zhao, Qiang
AU - Huang, Wei
N1 - Publisher Copyright:
© 2019 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim
PY - 2019/10/1
Y1 - 2019/10/1
N2 - Organic persistent room-temperature phosphorescence (OPRTP) materials show great prospects in optoelectronic and biomedical applications, such as display, anti-counterfeiting, sensing, and bioimaging. However, the reported OPRTP material systems are relatively rare, and it is a challenge to achieve the tunability of OPRTP. In this work, a series of polycyclic luminophores are developed based on an indole derivative (6,12-diphenyl-5,6,11,12-tetrahydroindolo[3,2-b] carbazole, Ben-H) as the structural skeleton. These compounds unexpectedly exhibit dual OPRTP at 442 to 623 nm with lifetimes spanning from 2 to 759 ms. Experimental data and theoretical calculations suggest that CH⋅⋅⋅π interactions in the T-shaped dimers facilitate the intermolecular charge transfer, resulting in OPRTP in the yellow spectral region, and the persistent blue emission results from the intramolecular charge transfer. This work contributes to better understand the key role of charge transfer in achieving OPRTP and broaden the scope of OPRTP materials.
AB - Organic persistent room-temperature phosphorescence (OPRTP) materials show great prospects in optoelectronic and biomedical applications, such as display, anti-counterfeiting, sensing, and bioimaging. However, the reported OPRTP material systems are relatively rare, and it is a challenge to achieve the tunability of OPRTP. In this work, a series of polycyclic luminophores are developed based on an indole derivative (6,12-diphenyl-5,6,11,12-tetrahydroindolo[3,2-b] carbazole, Ben-H) as the structural skeleton. These compounds unexpectedly exhibit dual OPRTP at 442 to 623 nm with lifetimes spanning from 2 to 759 ms. Experimental data and theoretical calculations suggest that CH⋅⋅⋅π interactions in the T-shaped dimers facilitate the intermolecular charge transfer, resulting in OPRTP in the yellow spectral region, and the persistent blue emission results from the intramolecular charge transfer. This work contributes to better understand the key role of charge transfer in achieving OPRTP and broaden the scope of OPRTP materials.
KW - charge transfer
KW - heavy-atom-free
KW - lifetimes
KW - room temperature phosphorescence
KW - π interactions
UR - http://www.scopus.com/inward/record.url?scp=85068520568&partnerID=8YFLogxK
U2 - 10.1002/adom.201900511
DO - 10.1002/adom.201900511
M3 - 文章
AN - SCOPUS:85068520568
SN - 2195-1071
VL - 7
JO - Advanced Optical Materials
JF - Advanced Optical Materials
IS - 19
M1 - 1900511
ER -