Towards Molecular Design Rationalization in branched Multi-Thiopene Semiconductors: The 2-Thienyl-persubstituted alpha-Oligothiophenes
Articolo
Data di Pubblicazione:
2010
Abstract:
The introduction of branching in multi-thiophene semiconductors,
although granting the required solubility for processing, results in an
increased molecular fluxionality and a higher level of distortion, thus
hampering pi conjugation. Accordingly, branched oligothiophenes require
rationalization of their structure reactivity relationships for
target-oriented design and optimization of the synthetic effort. Our
current research on spiderlike oligothiophenes affords deep insight
into the subject, and introduces new, easily accessible molecules with
attractive functional properties. In particular, a regular series,
T'X-5 of five new multi-thiophene systems, T'5(3), T'8(4), T'11(5),
T'14(6), and T'17(7), constituted by five, eight, 11, 14, and 17
thiophene units, respectively, their longest a-conjugated chain
consisting of tri-, tetra-, penta-, hexa-, and heptathiophene moieties,
respectively, has been synthesized and fully characterized from the
structural, spectroscopic, and electrochemical point of view. The
electronic properties of the monomers and their electropolymerization
ability are discussed and rationalized as a function of their molecular
structure, particularly in comparison with the series of
5-(2,2'-dithiophene)yl-persubstituted a-oligothiophenes (TXy)
previously reported by us. These oligothiophenes are easily accessible
materials, with promising properties for applications as active layers
in multifunctional organic devices including solar cells.
Tipologia CRIS:
01.01 Articolo in rivista
Keywords:
conducting materials; conjugation; dendrimers; oligothiophenes; structure-activity relationships
Elenco autori:
Muccini, Michele; DE ANGELIS, Filippo; Rizzo, Simona; Toffanin, Stefano; Pilati, TULLIO MARIA ENRICO
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