TY - JOUR
T1 - Prolonging the lifetime of ultralong organic phosphorescence through dihydrogen bonding
AU - Gu, Long
AU - Shi, Huifang
AU - Miao, Chunyang
AU - Wu, Qi
AU - Cheng, Zhichao
AU - Cai, Suzhi
AU - Gu, Mingxing
AU - Ma, Chaoqun
AU - Yao, Wei
AU - Gao, Yaru
AU - An, Zhongfu
AU - Huang, Wei
N1 - Publisher Copyright:
© 2018 The Royal Society of Chemistry.
PY - 2018
Y1 - 2018
N2 - Developing metal-free organic phosphorescence materials with ultralong lifetimes is a long-standing concern in optoelectronics. Herein, for the first time, we report a concise chemical strategy to prolong the lifetime of ultralong organic phosphorescence (UOP) via dihydrogen bonding. On slighlty tailoring alkyl chain in their molecular structure, the phosphorescence lifetime of the as-prepared triazine derivatives increased by 25% (to 788 ms) under ambient conditions. Moreover, tunable ultralong luminescence was realized with various excitation wavelengths. Significantly, a white persistent luminescence was obtained, for the first time, when the excitation at 300 nm was switched off. Combining theoretical simulations and single crystal analysis, we conclude that the polar dihydrogen bonds of C-H⋯H-N in the DCzNT crystal play a critical role in increasing the lifetime of the UOP. In addition, the ultralong phosphors were successfully applied to anti-counterfeiting of a currency bill. These results can offer a new platform towards tuning the lifetime of UOP and expanding the scope of organic phosphorescence materials and their optoelectronic applications.
AB - Developing metal-free organic phosphorescence materials with ultralong lifetimes is a long-standing concern in optoelectronics. Herein, for the first time, we report a concise chemical strategy to prolong the lifetime of ultralong organic phosphorescence (UOP) via dihydrogen bonding. On slighlty tailoring alkyl chain in their molecular structure, the phosphorescence lifetime of the as-prepared triazine derivatives increased by 25% (to 788 ms) under ambient conditions. Moreover, tunable ultralong luminescence was realized with various excitation wavelengths. Significantly, a white persistent luminescence was obtained, for the first time, when the excitation at 300 nm was switched off. Combining theoretical simulations and single crystal analysis, we conclude that the polar dihydrogen bonds of C-H⋯H-N in the DCzNT crystal play a critical role in increasing the lifetime of the UOP. In addition, the ultralong phosphors were successfully applied to anti-counterfeiting of a currency bill. These results can offer a new platform towards tuning the lifetime of UOP and expanding the scope of organic phosphorescence materials and their optoelectronic applications.
UR - http://www.scopus.com/inward/record.url?scp=85040236183&partnerID=8YFLogxK
U2 - 10.1039/c7tc04452f
DO - 10.1039/c7tc04452f
M3 - 文章
AN - SCOPUS:85040236183
SN - 2050-7534
VL - 6
SP - 226
EP - 233
JO - Journal of Materials Chemistry C
JF - Journal of Materials Chemistry C
IS - 2
ER -