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  4. Ultrafast energy transfer in divinylbiphenyl and divinylstilbene copolymers bridged by silylene
 
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Ultrafast energy transfer in divinylbiphenyl and divinylstilbene copolymers bridged by silylene

Journal
Journal of Physical Chemistry C
Journal Volume
117
Journal Issue
1
Pages
64-70
Date Issued
2013
Author(s)
Liu, K.-L.
Lee, S.-J.
Chen, I.-C.
Hsu, C.-P.
Chen, C.-H.
TIEN-YAU LUH  
DOI
10.1021/jp3082003
URI
http://www.scopus.com/inward/record.url?eid=2-s2.0-84872412419&partnerID=MN8TOARS
http://scholars.lib.ntu.edu.tw/handle/123456789/378153
Abstract
The energy-transfer properties of a regioregular silylene-spaced alternating donor–acceptor copolymer [(donor)3-SiMe2–acceptor-SiMe2]m (denoted (D3A)m) are determined with time-resolved spectroscopy; 4,4′-divinylbiphenyl serves as the donor and 4,4′-divinylstilbene as the acceptor. With excitation at wavelength 266 nm, fluorescence up-conversion curves at various detection wavelengths are measured. The observed decay of donor emission at a time constant 0.3 ps and the emission of the acceptor have a corresponding fast rise and a slower second rise at ∼2 ps. In the tail of fluorescence emission, the varied slow decay components (2–7 ps) on the donor and rise on the acceptor are observed and assigned to intrachain aggregates. With the Coulomb coupling which is beyond the multipole approximation, the Fermi golden rule rates of energy transfer are calculated between adjacent monomers and between the D2 exciton and A. In all D2A and D3A conformers calculated, we found that the coupling strengths of D–A and D–D are similar, but the coupling of exciton state D2 to the acceptor is about a factor of 1.25–1.72 weaker. According to the experimental data and the calculated results, we propose that the transfer between adjacent donors is ultrafast, so the excited donor has an energy transfer reaching the acceptor at a rate of ∼(0.6 ps)−1 and transports via either direction to extend a final rate of (0.3 ps)−1. According to the calculated ratios of coupling strength, the second rise component, 1–2 ps, is assigned to the transfer between the D2 exciton state and the acceptor.
SDGs

[SDGs]SDG7

Type
journal article

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