Publication | Closed Access
Excited-State Dynamics of a D-π-A Type Sulfonium-Based Alkoxystilbene Photoacid Generator
17
Citations
38
References
2015
Year
Organic Charge-transfer CompoundElectronic Excited StateChemical EngineeringExcited State PropertyEngineeringPhotochemistryLaser PhotochemistryMechanistic PhotochemistryExcited-state DynamicsPhotocatalysisPhysical ChemistrySulfonium Acid GeneratorExcited-state Relaxation DynamicsChemistryProton Generation EfficiencyChemical Kinetics
The excited-state relaxation dynamics of a D-π-A sulfonium-based alkoxystilbene photoacid generator has been investigated in acetonitrile solution by using femtosecond transient absorption and nanosecond laser flash photolysis experiments. For the first time, the successive reaction steps involved in the photoinduced proton generation of a sulfonium acid generator have been kinetically and spectrally resolved from the early stages (femtosecond time scale) to the final chemical processes (microsecond domain). An overall four-step reaction scheme is established, and two main deactivation pathways limiting the proton generation efficiency are identified and quantified.
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