New polyaniline (PANi) synthesis was performed starting from non-toxic N-phenil-p-phenylenediamine (aniline dimer) using reverse addition of monomer to oxidizing agent, the synthesis allows to produce highly soluble PANi. Several types of doped PANi were prepared to be used on electromechanical active actuators. Different techniques were used to include carbon nanoparticles such as carbon nanotubes and graphene. Bimorph solid state ionic actuators were prepared with these novel nanocomposites using a variety of supporting polymers.
Actuators based on intrinsic conductive polymers/carbon nanoparticles nanocompositesElectroactive Polymer Actuators and Devices (EAPAD) 2013 / Bocchini, Sergio; Accardo, Daisy; Ariano, Paolo; Lombardi, Mariangela; Biso, M.; Ansaldo, A.; Ricci, D.. - STAMPA. - 8687:(2013), pp. 86872I-1-86872I-11. [10.1117/12.2009634]
Actuators based on intrinsic conductive polymers/carbon nanoparticles nanocompositesElectroactive Polymer Actuators and Devices (EAPAD) 2013
BOCCHINI, SERGIO;ACCARDO, DAISY;ARIANO, PAOLO;LOMBARDI, MARIANGELA;
2013
Abstract
New polyaniline (PANi) synthesis was performed starting from non-toxic N-phenil-p-phenylenediamine (aniline dimer) using reverse addition of monomer to oxidizing agent, the synthesis allows to produce highly soluble PANi. Several types of doped PANi were prepared to be used on electromechanical active actuators. Different techniques were used to include carbon nanoparticles such as carbon nanotubes and graphene. Bimorph solid state ionic actuators were prepared with these novel nanocomposites using a variety of supporting polymers.File | Dimensione | Formato | |
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Bocchini et al. - 2013 - Actuators based on intrinsic conductive polymerscarbon nanoparticles nanocomposites.pdf
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https://hdl.handle.net/11583/2507882
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