Triplet–triplet energy transfer (EnT) is a fundamental activation pathway in photocatalysis. In this work, we report the mechanistic origins of the triplet excited state of carbazole-cyanobenzene donor–acceptor (D–A) fluorophores in EnT-based photocatalytic reactions and demonstrate the key factors that control the accessibility of the 3LE (locally excited triplet state) and 3CT (charge-transfer triplet state) via a combined photochemical and transient absorption spectroscopic study. We found that the energy order between 1CT (charge transfer singlet state) and 3LE dictates the accessibility of 3LE/3CT for EnT, which can be effectively engineered by varying solvent polarity and D–A character to depopulate 3LE and facilitate EnT from the che...
Development of organic molecules that can harvest triplet excitons under ambient conditions by a rel...
Transition metal-catalyzed cross-coupling has afforded synthetic chemists a remarkable variety of ef...
We have developed a photocatalytic system that explores the latent potential of a new photocatalyst ...
Triplet–triplet energy transfer (EnT) is a fundamental activation pathway in photocatalysis. In this...
Triplet–triplet energy transfer (EnT) is a fundamental activation pathway in photocatalysis. In this...
Harnessing visible light to access excited (triplet) states of organic compounds can enable impressi...
Transition metal catalysis has traditionally relied on organometallic complexes that can cycle throu...
Sensitization-initiated electron transfer (SenI-ET) describes a recently discovered photoredox strat...
Covalent linkage of fluorophores and photostabilizers was recently revived as a strategy to make org...
A molecular triad comprising a [Ru(bpy)3]2+ (bpy = 2,2′‐bipyridine) photosensitizer, a primary pheno...
We describe carbazolyl dicyanobenzene (CDCB)-based donor–acceptor (D–A) fluorophores as a class of c...
Knowing the underlying photophysics of thermally activated delayed fluorescence (TADF) allows proper...
Single electron redox processes allow the formation of highly reactive radicals – valuable intermedi...
Organic photosensitizers possessing efficient intersystem crossing (ISC) and forming long-living tri...
A series of 1,2,3-triazole linked donor–acceptor chromophores are prepared by Click Chemistry from e...
Development of organic molecules that can harvest triplet excitons under ambient conditions by a rel...
Transition metal-catalyzed cross-coupling has afforded synthetic chemists a remarkable variety of ef...
We have developed a photocatalytic system that explores the latent potential of a new photocatalyst ...
Triplet–triplet energy transfer (EnT) is a fundamental activation pathway in photocatalysis. In this...
Triplet–triplet energy transfer (EnT) is a fundamental activation pathway in photocatalysis. In this...
Harnessing visible light to access excited (triplet) states of organic compounds can enable impressi...
Transition metal catalysis has traditionally relied on organometallic complexes that can cycle throu...
Sensitization-initiated electron transfer (SenI-ET) describes a recently discovered photoredox strat...
Covalent linkage of fluorophores and photostabilizers was recently revived as a strategy to make org...
A molecular triad comprising a [Ru(bpy)3]2+ (bpy = 2,2′‐bipyridine) photosensitizer, a primary pheno...
We describe carbazolyl dicyanobenzene (CDCB)-based donor–acceptor (D–A) fluorophores as a class of c...
Knowing the underlying photophysics of thermally activated delayed fluorescence (TADF) allows proper...
Single electron redox processes allow the formation of highly reactive radicals – valuable intermedi...
Organic photosensitizers possessing efficient intersystem crossing (ISC) and forming long-living tri...
A series of 1,2,3-triazole linked donor–acceptor chromophores are prepared by Click Chemistry from e...
Development of organic molecules that can harvest triplet excitons under ambient conditions by a rel...
Transition metal-catalyzed cross-coupling has afforded synthetic chemists a remarkable variety of ef...
We have developed a photocatalytic system that explores the latent potential of a new photocatalyst ...