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Design and synthesis of self-assembled nonlinear optical multichromophore dendrimers with different acceptors
Self-assembled three-arm multichromophore dendrimers H4 and H5 based on the same aniline donor and phenyl-trifluoromethyl-tricyanofuran (CF 3 -TCF) or perfluorophenyl-tricyanofuran (5F-TCF) acceptor with isophorone-derived bridges were developed. In particular, a trifluorobenzyl dendron was introduc...
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Published in: | New journal of chemistry 2023-07, Vol.47 (27), p.12874-12882 |
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Main Authors: | , , , , , , , |
Format: | Article |
Language: | English |
Subjects: | |
Citations: | Items that this one cites Items that cite this one |
Online Access: | Get full text |
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Summary: | Self-assembled three-arm multichromophore dendrimers
H4
and
H5
based on the same aniline donor and phenyl-trifluoromethyl-tricyanofuran (CF
3
-TCF) or perfluorophenyl-tricyanofuran (5F-TCF) acceptor with isophorone-derived bridges were developed. In particular, a trifluorobenzyl dendron was introduced into the donor or bridge parts of the chromophores. The π-π interaction of the trifluorobenzyl dendron (TFD) could minimize the electrostatic interactions between molecules and increase the poling efficiency at high load densities. After poling, the dendrimer films
H4
and
H5
achieved a large electro-optic coefficient of 279 and 269 pm V
−1
, respectively, compared to 226 pm V
−1
for single chromophore
H2
with the same functional groups and conjugated structures. Moreover, the long-term alignment stability of chromophores was improved due to the non-covalently crosslinked network formed by the TFD-TFD π-π interactions. After 1000 h annealing at room temperature, above 95% of the initial
r
33
values could be still maintained for the self-assembled films
H2
,
H4
and
H5
. The high
r
33
values and long-term alignment stability make them promising candidates for application in advanced photonic devices.
Self-assembled three-arm multichromophore dendrimers
H4
and
H5
based on the same aniline donor and phenyl-trifluoromethyl-tricyanofuran (CF
3
-TCF) or perfluorophenyl-tricyanofuran (5F-TCF) acceptor with isophorone-derived bridges were developed. |
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ISSN: | 1144-0546 1369-9261 |
DOI: | 10.1039/d3nj02328a |