The research aims to analyze how solvent properties and excitation wavelengths influence the charge transfer dynamics in 4-methoxy-4′-nitrostilbene.
Investigated the impact of solvent polarity and viscosity on excited-state behavior.
Analyzed the effects of different excitation wavelengths on charge transfer dynamics.
Utilized spectroscopic techniques to monitor excited-state transitions.
Higher solvent polarity enhanced charge transfer efficiency.
Viscosity affected the rate of charge transfer in various solvents.
Different excitation wavelengths resulted in distinct excited-state dynamics.
Abstract
A detailed study of the excited-state dynamics of 4-methoxy-4′-nitrostilbene (MNS), a donor–acceptor chromophore, focusing on the effects of solvent polarity, viscosity, and excitation energy.