Conducting polymers are promising materials for tissue engineering applications, since they can both provide a biocompatible scaffold for physical support of living cells, and transmit electrical and mechanical stimuli thanks to their electrical conductivity and reversible doping. In this work, thin films of one of the most promising materials for bioelectronics applications, poly(3,4-ethylenedioxythiophene) poly(styrenesulfonate) (
Titolo: | Physical and Electrochemical Properties of PEDOT:PSS as a Tool for Controlling Cell Growth | |
Autore/i: | MARZOCCHI, MARCO; GUALANDI, ISACCO; CALIENNI, MARIA; ZIRONI, ISABELLA; SCAVETTA, ERIKA; CASTELLANI, GASTONE; FRABONI, BEATRICE | |
Autore/i Unibo: | ||
Anno: | 2015 | |
Rivista: | ||
Digital Object Identifier (DOI): | http://dx.doi.org/10.1021/acsami.5b04768 | |
Abstract: | Conducting polymers are promising materials for tissue engineering applications, since they can both provide a biocompatible scaffold for physical support of living cells, and transmit electrical and mechanical stimuli thanks to their electrical conductivity and reversible doping. In this work, thin films of one of the most promising materials for bioelectronics applications, poly(3,4-ethylenedioxythiophene) poly(styrenesulfonate) ( | |
Data stato definitivo: | 2015-11-06T15:03:41Z | |
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