posted on 2023-07-24, 23:03authored byEmely Freytag, Lasse Kreimendahl, Marco Holzapfel, Jens Petersen, Heiko Lackinger, Matthias Stolte, Frank Würthner, Roland Mitric, Christoph Lambert
Five chiral squaraine dimers were synthesized by fusing
chiral
indolenine semisquaraines with three different benzobisthiazole bridges.
The thereby created squaraine dimers show a strong splitting of the
lowest energy absorption bands caused by exciton coupling. The intensities
of the two exciton transitions and the energetic splitting depend
on the angle of the two squaraine moieties within the chromophore
dimer. The electric circular dichroism spectra of the dimers show
intense Cotton effects whose sign depends on the used squaraine chromophores.
Sizable anisotropies gabs of up to 2.6
× 10–3 could be obtained. TD-DFT calculations
were used to partition the rotational strength into the three Rosenfeld
terms where the electric-magnetic coupling turned out to be the dominant
contribution while the exciton chirality term is much smaller. This
is because the chromophore dimers are essentially planar but the angle
between the electric transition dipole moment of one squaraine and
the magnetic transition dipole moment of the other squaraine strongly
deviates from 90°, which makes the dot product between the two
moment vectors and, thus, the rotational strength substantial.