A series of pi-conjugated homopolymers of type poly(aryleneethynylene) (PAE), [-Ar-Cequivalent toC-](n), (Ar = 2,5-bis(butoxy)benzene (7a), 2,5-bis(octyloxy)benzene (7b), 2,5-bis(hexadecyloxy)benzene (7c), 3-butylthiophene (7d), and 3-hexadecylthiophene (7e)) have been prepared by further improvement of the palladium-catalyzed Extended One-Pot (EOP) synthetic protocol. With the use of dioxane as solvent and higher reaction temperature (110 degreesC), much higher polymerization degree, improved catalytic efficiency, and increased material purity were obtained. Numerical simulations have been performed in a series of different conjugated polymers in order to evaluate the role of the connection between aromatic rings in the maintaining of an effective electronic conjugation through the polymer chain. Experimentally, the conjugation properties have been investigated by means of photophysical measurements in liquid solution and in solid-state films. The electric transport properties have been characterized in view of applications to electronic devices.

Pizzoferrato, R., Berliocchi, M., DI CARLO, A., Lugli, P., Venanzi, M., Micozzi, A., et al. (2003). Improvement of the extended one-pot (EOP) procedure to form poly(aryleneethynylene)s and investigation of their electrical and optical properties. MACROMOLECULES [10.1021/ma0216829].

Improvement of the extended one-pot (EOP) procedure to form poly(aryleneethynylene)s and investigation of their electrical and optical properties

PIZZOFERRATO, ROBERTO;DI CARLO, ALDO;VENANZI, MARIANO;
2003-01-01

Abstract

A series of pi-conjugated homopolymers of type poly(aryleneethynylene) (PAE), [-Ar-Cequivalent toC-](n), (Ar = 2,5-bis(butoxy)benzene (7a), 2,5-bis(octyloxy)benzene (7b), 2,5-bis(hexadecyloxy)benzene (7c), 3-butylthiophene (7d), and 3-hexadecylthiophene (7e)) have been prepared by further improvement of the palladium-catalyzed Extended One-Pot (EOP) synthetic protocol. With the use of dioxane as solvent and higher reaction temperature (110 degreesC), much higher polymerization degree, improved catalytic efficiency, and increased material purity were obtained. Numerical simulations have been performed in a series of different conjugated polymers in order to evaluate the role of the connection between aromatic rings in the maintaining of an effective electronic conjugation through the polymer chain. Experimentally, the conjugation properties have been investigated by means of photophysical measurements in liquid solution and in solid-state films. The electric transport properties have been characterized in view of applications to electronic devices.
2003
Pubblicato
Rilevanza internazionale
Articolo
Sì, ma tipo non specificato
Settore FIS/03 - FISICA DELLA MATERIA
English
Con Impact Factor ISI
Catalysis; Computer simulation; Conductive materials; Electric properties; Electron transport properties; Electronic properties; Optical properties; Polymerization; Solvents; Temperature; Aromatic rings; Catalytic efficiency; Electric transport properties; Photophysical measurement; Polyaryleneethynylenes; Aromatic polymers
Pizzoferrato, R., Berliocchi, M., DI CARLO, A., Lugli, P., Venanzi, M., Micozzi, A., et al. (2003). Improvement of the extended one-pot (EOP) procedure to form poly(aryleneethynylene)s and investigation of their electrical and optical properties. MACROMOLECULES [10.1021/ma0216829].
Pizzoferrato, R; Berliocchi, M; DI CARLO, A; Lugli, P; Venanzi, M; Micozzi, A; Ricci, A; Lo Sterzo, C
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2108/52330
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