Poly(3,4-ethylenedioxythiophene)s are the conducting polymers (CP) with the biggest prospects in the field of bioelectronics due to their combination of characteristics (conductivity, stability, transparency and biocompatibility). The gold standard material is the commercially available poly(3,4-ethylenedioxythiophene):poly(styrene sulfonate) (PEDOT:PSS). However, in order to well connect the two fields of biology and electronics, PEDOT:PSS presents some limitations associated with its low (bio)functionality. In this review, we provide an insight into the synthesis and applications of innovative poly(ethylenedioxythiophene)-type materials for bioelectronics. First, we present a detailed analysis of the different synthetic routes to (bio)fun...
Injectable bioelectronics could become an alternative or a complement to traditional drug treatments...
Injectable bioelectronics could become an alternative or a complement to traditional drug treatments...
Injectable bioelectronics could become an alternative or a complement to traditional drug treatments...
Poly(3,4-ethylenedioxythiophene)s are the conducting polymers (CP) with the biggest prospects in the...
Poly(3,4-ethylenedioxythiophene)s are the conducting polymers (CP) with the biggest prospects in the...
Poly(3,4-ethylenedioxythiophene)s are the conducting polymers (CP) with the biggest prospects in the...
Background: Biomedical engineering has emerged as a multidisciplinary endeavor. Biomedical engineeri...
Background: Biomedical engineering has emerged as a multidisciplinary endeavor. Biomedical engineeri...
With the advancement of applications in biomedicines and bioelectronics, conducting polymers have at...
Conducting polymers are promising materials for tissue engineering applications, since they can both...
Intrinsically soft and stretchable bioelectronics exhibit tissue-like mechanical behavior that enabl...
Starting from the last decade, conductive polymers have been employed to realize a wide variety of d...
Starting from the last decade, conductive polymers have been employed to realize a wide variety of d...
Starting from the last decade, conductive polymers have been employed to realize a wide variety of d...
Injectable bioelectronics could become an alternative or a complement to traditional drug treatments...
Injectable bioelectronics could become an alternative or a complement to traditional drug treatments...
Injectable bioelectronics could become an alternative or a complement to traditional drug treatments...
Injectable bioelectronics could become an alternative or a complement to traditional drug treatments...
Poly(3,4-ethylenedioxythiophene)s are the conducting polymers (CP) with the biggest prospects in the...
Poly(3,4-ethylenedioxythiophene)s are the conducting polymers (CP) with the biggest prospects in the...
Poly(3,4-ethylenedioxythiophene)s are the conducting polymers (CP) with the biggest prospects in the...
Background: Biomedical engineering has emerged as a multidisciplinary endeavor. Biomedical engineeri...
Background: Biomedical engineering has emerged as a multidisciplinary endeavor. Biomedical engineeri...
With the advancement of applications in biomedicines and bioelectronics, conducting polymers have at...
Conducting polymers are promising materials for tissue engineering applications, since they can both...
Intrinsically soft and stretchable bioelectronics exhibit tissue-like mechanical behavior that enabl...
Starting from the last decade, conductive polymers have been employed to realize a wide variety of d...
Starting from the last decade, conductive polymers have been employed to realize a wide variety of d...
Starting from the last decade, conductive polymers have been employed to realize a wide variety of d...
Injectable bioelectronics could become an alternative or a complement to traditional drug treatments...
Injectable bioelectronics could become an alternative or a complement to traditional drug treatments...
Injectable bioelectronics could become an alternative or a complement to traditional drug treatments...
Injectable bioelectronics could become an alternative or a complement to traditional drug treatments...