A novel thiophenic tetramer containing a cinnamate group in the side chain with a functionalization degree of 50% is reported. The tetramer was obtained by means of a simple and straightforward procedure involving the functionalization of a p-methoxyphenoxy substituted thiophenic precursor, which led to a soluble product with a good yield. The oligomer was fully characterized from a structural and chemical point of view and employed for the fabrication of small molecule organic solar cells exploiting the bulk heterojunction (BHJ) architecture. The presence of an UV-light sensitive group in the tetramer allowed the photocrosslinking of tetramer/PCBM blends, giving high values of photocurrent and conversion efficiency for the exposed samples. Moreover, the UV-treated devices showed improved stability, even upon heating for three days at 130 °C, thus confirming that photocrosslinking can strongly reduce phase segregation under severe operational conditions.

Lanzi, M., Salatelli, E., Di-Nicola, F.P., Zuppiroli, L., Pierini, F. (2017). A new photocrosslinkable oligothiophene for organic solar cells with enhanced stability. MATERIALS CHEMISTRY AND PHYSICS, 186, 98-107 [10.1016/j.matchemphys.2016.10.034].

A new photocrosslinkable oligothiophene for organic solar cells with enhanced stability

LANZI, MASSIMILIANO;SALATELLI, ELISABETTA;DI NICOLA, FRANCESCO PAOLO;
2017

Abstract

A novel thiophenic tetramer containing a cinnamate group in the side chain with a functionalization degree of 50% is reported. The tetramer was obtained by means of a simple and straightforward procedure involving the functionalization of a p-methoxyphenoxy substituted thiophenic precursor, which led to a soluble product with a good yield. The oligomer was fully characterized from a structural and chemical point of view and employed for the fabrication of small molecule organic solar cells exploiting the bulk heterojunction (BHJ) architecture. The presence of an UV-light sensitive group in the tetramer allowed the photocrosslinking of tetramer/PCBM blends, giving high values of photocurrent and conversion efficiency for the exposed samples. Moreover, the UV-treated devices showed improved stability, even upon heating for three days at 130 °C, thus confirming that photocrosslinking can strongly reduce phase segregation under severe operational conditions.
2017
Lanzi, M., Salatelli, E., Di-Nicola, F.P., Zuppiroli, L., Pierini, F. (2017). A new photocrosslinkable oligothiophene for organic solar cells with enhanced stability. MATERIALS CHEMISTRY AND PHYSICS, 186, 98-107 [10.1016/j.matchemphys.2016.10.034].
Lanzi, Massimiliano; Salatelli, Elisabetta; Di-Nicola, Francesco Paolo; Zuppiroli, Luca; Pierini, Filippo
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11585/579749
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