TY - JOUR
T1 - Multi-branch effect on aggregation-induced emission enhancement and tunable emission of triphenylamine fluorophores
AU - Zhang, Mengmeng
AU - Yang, Wen
AU - Li, Ke
AU - Zhou, Weiqun
AU - Gong, Tingfeng
AU - Xue, Renyu
N1 - Publisher Copyright:
© 2017 Elsevier B.V.
PY - 2018/1/15
Y1 - 2018/1/15
N2 - We designed and synthesized three triphenylamine-based compounds (MOTPAs), namely 4-(((4-methoxyphenylimino)methyl)phenyl)-diphenylamine (SMOTPA), di(4-((4-methoxy- phenylimino)methyl)) phenylamine (DMOTPA), and tris(4-((4-methoxyphenylimino)methyl)) phenylamine (TMOTPA). Initially, MOTPAs possessed aggregation- and crystallization-induced emission enhancement (AIEE and CIEE) properties via the restrained intramolecular charge transfer (ICT) state, and by preventing π-π stacking and restricted intramolecular rotation. It was also demonstrated that multi-branch effect of triphenylamine was benefit to enhance AIEE and CIEE. The phenomenon was explained by X-ray diffraction analysis and calculations. Interestingly, the single branch fluorophores (SMOTPA) presented a tunable emission. The green emission of SMOTPA originating from the twisted intramolecular charge transfer (TICT) state in the strong polar solvent (methanol) transformed into a strong blue fluorescence assigned to the local excited (LE) state in the aggregated and crystalline states due to the restraint of the TICT state. Fluorescence imaging experiments of TMOTPA in living A549 cells proved its potential for practical applications.
AB - We designed and synthesized three triphenylamine-based compounds (MOTPAs), namely 4-(((4-methoxyphenylimino)methyl)phenyl)-diphenylamine (SMOTPA), di(4-((4-methoxy- phenylimino)methyl)) phenylamine (DMOTPA), and tris(4-((4-methoxyphenylimino)methyl)) phenylamine (TMOTPA). Initially, MOTPAs possessed aggregation- and crystallization-induced emission enhancement (AIEE and CIEE) properties via the restrained intramolecular charge transfer (ICT) state, and by preventing π-π stacking and restricted intramolecular rotation. It was also demonstrated that multi-branch effect of triphenylamine was benefit to enhance AIEE and CIEE. The phenomenon was explained by X-ray diffraction analysis and calculations. Interestingly, the single branch fluorophores (SMOTPA) presented a tunable emission. The green emission of SMOTPA originating from the twisted intramolecular charge transfer (TICT) state in the strong polar solvent (methanol) transformed into a strong blue fluorescence assigned to the local excited (LE) state in the aggregated and crystalline states due to the restraint of the TICT state. Fluorescence imaging experiments of TMOTPA in living A549 cells proved its potential for practical applications.
KW - Aggregation-induced emission enhancement
KW - Crystallization-induced emission enhancement
KW - MOTPAs
KW - Tunable emission
UR - http://www.scopus.com/inward/record.url?scp=85034054389&partnerID=8YFLogxK
U2 - 10.1016/j.matchemphys.2017.10.030
DO - 10.1016/j.matchemphys.2017.10.030
M3 - Article
AN - SCOPUS:85034054389
SN - 0254-0584
VL - 204
SP - 37
EP - 47
JO - Materials Chemistry and Physics
JF - Materials Chemistry and Physics
ER -