posted on 2016-10-17, 00:00authored bySimon Kahmann, Daniele Fazzi, Gebhard J. Matt, Walter Thiel, Maria A. Loi, Christoph J. Brabec
We
investigate the photoinduced absorption (PIA) spectra of the
prototypical donor–acceptor polymer [2,6-(4,4-bis(2-ethylhexyl)-4H-cyclopenta[2,1-b;3,4-b′]dithiophene)-alt-4,7-(2,1,3-benzothiadiazole)] (C-PCPDTBT) and its silicon
bridged variant Si-PCPDTBT over a spectral range from 0.07 to 1.5
eV. Comparison between time-dependent density functional theory simulations
of the electronic and vibrational transitions of singlet excitons,
triplet excitons, polarons, and bipolarons with the experimental results
proves that the observed features are due to positive polarons delocalized
on the polymer chains. We find that the more crystalline Si-bridged
variant gives rise to a red-shift in the transition energies, especially
in the mid-infrared (MIR) spectral range and furthermore observe that
the pristine polymers’ responses depend on the excitation energy.
Blending with PCBM, on the other hand, leads to excitation-independent
PIA spectra. By computing the response properties of molecular aggregates,
we show that polarons are delocalized in not only the intra- but also
the interchain direction, leading to intermolecular transitions which
correspond well to experimental absorption features at the lowest
energies.