Novel thiophene-based oligomer, 2,2’-bis(2,2’-bithiophene-5-yl)-3,3’-bithianaphthene (TX), was designed and synthesized, and its electrochemical and spectral properties characterised. TX was readily polymerised electrochemically to form well organized conducting homopolymer films on various solid electrode substrates. Moreover, it was successfully used for deposition by electropolymerisation of electrochemically active thin films of co-polymers with three different monomers of functionalised bis(2,2’-bithienyl)methane derivatives. It appeared that TX was an effective crosslinker and 3D promoter in these electropolymerisations involving co-monomers intrinsically showing limited aptitude for the electropolymerisation or forming polymer films of low conductivity. This attractive TX ability stems from combination of its (i) high conjugation efficiency in ea ch of the two planar moieties, (ii) intrinsic 3D structure on account of the presenceof the central node, and (iii) intrinsic regioselectivity in electropolymerisation on account of the positions of the two available free apha-thiophene sites.
An effective multipurpose building block for 3D electropolymerisation: 2,2’-bis(2,2’-bithiophene-5-yl)-3,3’-bithianaphthene / F., Sannicolò; S., Rizzo; T., Benincori; W., Kutner; K., Noworyta; J. W., Sobczak; V., Bonometti; L., Falciola; P. R., Mussini; Pierini, Marco. - In: ELECTROCHIMICA ACTA. - ISSN 0013-4686. - STAMPA. - 55:(2010), pp. 8352-8364. [10.1016/j.electacta.2010.04.070]
An effective multipurpose building block for 3D electropolymerisation: 2,2’-bis(2,2’-bithiophene-5-yl)-3,3’-bithianaphthene
PIERINI, MARCO
2010
Abstract
Novel thiophene-based oligomer, 2,2’-bis(2,2’-bithiophene-5-yl)-3,3’-bithianaphthene (TX), was designed and synthesized, and its electrochemical and spectral properties characterised. TX was readily polymerised electrochemically to form well organized conducting homopolymer films on various solid electrode substrates. Moreover, it was successfully used for deposition by electropolymerisation of electrochemically active thin films of co-polymers with three different monomers of functionalised bis(2,2’-bithienyl)methane derivatives. It appeared that TX was an effective crosslinker and 3D promoter in these electropolymerisations involving co-monomers intrinsically showing limited aptitude for the electropolymerisation or forming polymer films of low conductivity. This attractive TX ability stems from combination of its (i) high conjugation efficiency in ea ch of the two planar moieties, (ii) intrinsic 3D structure on account of the presenceof the central node, and (iii) intrinsic regioselectivity in electropolymerisation on account of the positions of the two available free apha-thiophene sites.I documenti in IRIS sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione.