Visualizing Excited-State Dynamics of a Diaryl Thiophene:
Femtosecond Stimulated Raman Scattering as a Probe of Conjugated Molecules
Version 2 2016-07-29, 14:24Version 2 2016-07-29, 14:24
Version 1 2016-07-21, 14:18Version 1 2016-07-21, 14:18
Posted on 2016-07-18 - 00:00
Conjugated organic polymers based
on substituted thiophene units
are versatile building blocks of many photoactive materials, such
as photochromic molecular switches or solar energy conversion devices.
Unraveling the different processes underlying their photochemistry,
such as the evolution on different electronic states and multidimensional
structural relaxation, is a challenge critical to defining their function.
Using femtosecond stimulated Raman scattering (FSRS) supported by
quantum chemical calculations, we visualize the reaction pathway upon
photoexcitation of the model compound 2-methyl-5-phenylthiophene.
Specifically, we find that the initial wavepacket dynamics of the
reaction coordinates occurs within the first ≈1.5 ps, followed
by a ≈10 ps thermalization. Subsequent slow opening of the
thiophene ring through a cleavage of the carbon–sulfur bond
triggers an intersystem crossing to the triplet excited state. Our
work demonstrates how a detailed mapping of the excited-state dynamics
can be obtained, combining simultaneous structural sensitivity and
ultrafast temporal resolution of FSRS with the chemical information
provided by time-dependent density functional theory calculations.
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Batignani, Giovanni; Pontecorvo, Emanuele; Ferrante, Carino; Aschi, Massimiliano; Elles, Christopher
G.; Scopigno, Tullio (2016). Visualizing Excited-State Dynamics of a Diaryl Thiophene:
Femtosecond Stimulated Raman Scattering as a Probe of Conjugated Molecules. ACS Publications. Collection. https://doi.org/10.1021/acs.jpclett.6b01137