TY - JOUR
T1 - Invoking Ultralong Organic Phosphorescence by Locking Dimeric Chromophores Through Multiple Hydrogen Bonding
AU - Wang, Yuefei
AU - Lin, Zhenyi
AU - Zhang, Zaiyong
AU - Li, Xian
AU - Yao, Xiaokang
AU - Yang, Huanyu
AU - Zheng, Han
AU - Zhao, Yi
AU - Wu, Beishen
AU - An, Zhongfu
AU - Cai, Suzhi
AU - Ma, Huili
AU - Huang, Wei
N1 - Publisher Copyright:
© 2024 Wiley-VCH GmbH.
PY - 2024/11/5
Y1 - 2024/11/5
N2 - Ultralong organic phosphorescence (UOP) is essential for potential applications in bioelectronics and optoelectronics. However, the precise design of UOP materials remains a formidable challenge. Herein, a facile strategy is presented to confine dimeric chromophores for triggering UOP emission, based on the manipulation of the carbonyl, sulfonyl, and amino groups within organic phosphors. The experimental data reveal that saccharin analogs in crystals containing dimeric chromophores, confined by the (3D) hydrogen-bonded networks, exhibit ultralong emission lifetime of up to 635 ms under ambient conditions. Whereas for saccharin analogue crystals lacking dimeric chromophores, the lifetime decreases to 54 ms, resulting in the absence of UOP emission. Moreover, the non-toxic saccharin crystals with UOP have succeeded in drug anti-counterfeiting. These findings will open a novel avenue for the design UOP materials and broaden the domain of UOP to diverse applications.
AB - Ultralong organic phosphorescence (UOP) is essential for potential applications in bioelectronics and optoelectronics. However, the precise design of UOP materials remains a formidable challenge. Herein, a facile strategy is presented to confine dimeric chromophores for triggering UOP emission, based on the manipulation of the carbonyl, sulfonyl, and amino groups within organic phosphors. The experimental data reveal that saccharin analogs in crystals containing dimeric chromophores, confined by the (3D) hydrogen-bonded networks, exhibit ultralong emission lifetime of up to 635 ms under ambient conditions. Whereas for saccharin analogue crystals lacking dimeric chromophores, the lifetime decreases to 54 ms, resulting in the absence of UOP emission. Moreover, the non-toxic saccharin crystals with UOP have succeeded in drug anti-counterfeiting. These findings will open a novel avenue for the design UOP materials and broaden the domain of UOP to diverse applications.
KW - dimeric chromophores
KW - drug anti-counterfeiting
KW - hydrogen bonding
KW - ultralong organic phosphorescence
KW - π–π interactions
UR - http://www.scopus.com/inward/record.url?scp=85202158884&partnerID=8YFLogxK
U2 - 10.1002/adom.202401407
DO - 10.1002/adom.202401407
M3 - 文章
AN - SCOPUS:85202158884
SN - 2195-1071
VL - 12
JO - Advanced Optical Materials
JF - Advanced Optical Materials
IS - 31
M1 - 2401407
ER -