TY - JOUR
T1 - A long-lived fluorenyl cation
T2 - Efficiency booster for uncaging and photobase properties
AU - Abdellaoui, Chahinez
AU - Hermanns, Volker
AU - Reinfelds, Matiss
AU - Scheurer, Maximilian
AU - Dreuw, Andreas
AU - Heckel, Alexander
AU - Wachtveitl, Josef
N1 - Funding Information:
We thank Dr. Christoph Kaiser and Dr. Markus Braun for helpful discussion. This work has been supported by GRK 1986 ‘‘CLiC’’.
Publisher Copyright:
© 2022 the Owner Societies.
PY - 2022/3/7
Y1 - 2022/3/7
N2 - The photochemistry of fluorenols has been of special interest for many years. This is because both the fluorenol and the fluorenyl cation are antiaromatic in the ground state due to their 4n π-electrons according to the Hückel rule. The photolysis reaction of various fluorene derivatives takes place via a cation intermediate and is preferred due to its excited state aromaticity. Here we present an extremely long-lived fluorenyl cation and its effects on the uncaging of various leaving groups. We analyze the relationship between uncaging quantum yields of fluorene-based cages and the longevity of their fluorenyl cations with different spectroscopic methods in the steady state and on an ultrafast time scale and find that the uncaging quantum yield rises with the stability of the cation. In contrast to previous reports, the cation can be observed on a time scale of minutes, even in moderately protic solvents as methanol and ethanol. The stability of this cation depends on the dimethylamino-substituents on the fluorene scaffold and the properties of the solvent. In addition, with bis-dimethylamino fluorenol, a photobase is introduced that expands the small group of known photoinduced hydroxide emitters.
AB - The photochemistry of fluorenols has been of special interest for many years. This is because both the fluorenol and the fluorenyl cation are antiaromatic in the ground state due to their 4n π-electrons according to the Hückel rule. The photolysis reaction of various fluorene derivatives takes place via a cation intermediate and is preferred due to its excited state aromaticity. Here we present an extremely long-lived fluorenyl cation and its effects on the uncaging of various leaving groups. We analyze the relationship between uncaging quantum yields of fluorene-based cages and the longevity of their fluorenyl cations with different spectroscopic methods in the steady state and on an ultrafast time scale and find that the uncaging quantum yield rises with the stability of the cation. In contrast to previous reports, the cation can be observed on a time scale of minutes, even in moderately protic solvents as methanol and ethanol. The stability of this cation depends on the dimethylamino-substituents on the fluorene scaffold and the properties of the solvent. In addition, with bis-dimethylamino fluorenol, a photobase is introduced that expands the small group of known photoinduced hydroxide emitters.
UR - http://www.scopus.com/inward/record.url?scp=85125680182&partnerID=8YFLogxK
U2 - 10.1039/d1cp05292f
DO - 10.1039/d1cp05292f
M3 - Article
C2 - 35174833
AN - SCOPUS:85125680182
VL - 24
SP - 5294
EP - 5300
JO - Physical Chemistry, Chemical Physics
JF - Physical Chemistry, Chemical Physics
SN - 1463-9076
IS - 9
ER -