TY - JOUR
T1 - Exploring Potential Energy Surfaces for Aggregation-Induced Emission—From Solution to Crystal
AU - Crespo-Otero, Rachel
AU - Li, Quansong
AU - Blancafort, Lluís
N1 - Publisher Copyright:
© 2019 Wiley-VCH Verlag GmbH & Co. KGaA, Weinheim
PY - 2019/3/15
Y1 - 2019/3/15
N2 - Aggregation-induced emission (AIE) is a phenomenon where non-luminescent compounds in solution become strongly luminescent in aggregate and solid phase. It provides a fertile ground for luminescent applications that has rapidly developed in the last 15 years. In this review, we focus on the contributions of theory and computations to understanding the molecular mechanism behind it. Starting from initial models, such as restriction of intramolecular rotations (RIR), and the calculation of non-radiative rates with Fermi's golden rule (FGR), we center on studies of the global excited-state potential energy surfaces that have provided the basis for the restricted access to a conical intersection (RACI) model. In this model, which has been shown to apply for a diverse group of AIEgens, the lack of fluorescence in solution comes from radiationless decay at a CI in solution that is hindered in the aggregate state. We also highlight how intermolecular interactions modulate the photophysics in the aggregate phase, in terms of fluorescence quantum yield and emission color.
AB - Aggregation-induced emission (AIE) is a phenomenon where non-luminescent compounds in solution become strongly luminescent in aggregate and solid phase. It provides a fertile ground for luminescent applications that has rapidly developed in the last 15 years. In this review, we focus on the contributions of theory and computations to understanding the molecular mechanism behind it. Starting from initial models, such as restriction of intramolecular rotations (RIR), and the calculation of non-radiative rates with Fermi's golden rule (FGR), we center on studies of the global excited-state potential energy surfaces that have provided the basis for the restricted access to a conical intersection (RACI) model. In this model, which has been shown to apply for a diverse group of AIEgens, the lack of fluorescence in solution comes from radiationless decay at a CI in solution that is hindered in the aggregate state. We also highlight how intermolecular interactions modulate the photophysics in the aggregate phase, in terms of fluorescence quantum yield and emission color.
KW - aggregation-induced emission
KW - conical intersections
KW - fluorescence
KW - intermolecular interactions
KW - potential energy surfaces
UR - https://www.scopus.com/pages/publications/85060011789
U2 - 10.1002/asia.201801649
DO - 10.1002/asia.201801649
M3 - Review article
C2 - 30548109
AN - SCOPUS:85060011789
SN - 1861-4728
VL - 14
SP - 700
EP - 714
JO - Chemistry - An Asian Journal
JF - Chemistry - An Asian Journal
IS - 6
ER -