Scj. Meskers et al., Interchromophoric coupling in oligo(p-phenylenevinylene)-substituted poly(propyleneimine) dendrimers, J PHYS CH A, 105(45), 2001, pp. 10220-10229
Poly(propyleneimine) dendrimers functionalized with oligo(p-phenylenevinyle
ne) (OPV) end groups based on distyrylbenzene show fluorescence properties
that depend on dendrimer generation and thereby on the number of end groups
. The compounds are investigated using site-selective and time-resolved flu
orescence methods. A red shift of the low-temperature emission spectrum is
observed with increasing dendrimer generation. This is accompanied by chang
es in the shape of the lowest absorption band of the dendrimers. Results ar
e interpreted in terms of rapid migration of electronic excitation energy a
mong the OPV units. We find that coupling between the electronic motion on
the OPV groups has to be taken into account to explain the magnitude of the
red shift in emission. This implies that interchromophoric interactions ar
e sufficiently strong to induce delocalization of the excitation over more
than one chromophoric group. Experimental data indicate that off-diagonal d
isorder is large; i.e., excited-state interchromophoric interaction energie
s are given by a broad statistical distribution. The off-diagonal disorder
is interpreted in terms of the flexible nature of the dendrimer, leading to
a broad distribution of distances between the chromophoric end groups. A d
elayed emission component is observed for the dendrimers, but this componen
t is absent for the isolated OPV unit. The delayed emission is attributed t
o excimer and/or exciplex formation within the dendrimer.