Functionalized poly(ethylene dioxythiophene) (PEDOT) was copolymerized with two vinyl monomers of different hydrophilicity, acrylic acid and hydroxyethyl methacrylate, to produce electroconductive hydrogels in a range of physical and electronic properties. These hydrogels not only possessed tailored physical properties, such as swelling ratios and mechanical properties, but also displayed electroactivity dependent on the chemical composition of the network. Raman spectroscopy indicated that the functional PEDOT in the hydrogels is in an oxidized form, most likely accounting for the good electrochemical response of the hydrogels observed in physiological buffer. In vitro cell studies showed that cardiac cells respond differently when seeded ...
Injectable bioelectronics could become an alternative or a complement to traditional drug treatments...
Electrically conductive hydrogels have recently generated much attention, as they have significant p...
Bioelectronic devices enable efficient and effective communication between medical devices and human...
Functionalized poly(ethylene dioxythiophene) (f-PEDOT) was copolymerized with two vinyl monomers of ...
Poly(ethylene dioxythiophene) with functional pendant groups bearing double bonds is synthesized and...
Poly(ethylene dioxythiophene) with functional pendant groups bearing double bonds is synthesized and...
Combining electrical properties with synthetic scaffolds such as hydrogels is an attractive approach...
Poly(ethylene dioxythiophene) with functional pendant groups bearing double bonds is synthesized and...
Electroconductive hydrogels (ECHs) are highly hydrated 3D networks generated through the incorporati...
Electroconductive hydrogels are used in a wide range of biomedical applications, including electrode...
Conducting polymers (CPs) have exciting potential as scaffolds for tissue engineering, typically app...
Cross-linking biomolecules with electroconductive nanostructures through noncovalent interactions ca...
Cardiac tissue engineering is a promising strategy to treat heart failure. Yet, several issues remai...
Electroconductive hydrogels (ECHs) have attracted interest for tissue engineering applications due t...
This paper reports on the effects of poly(3,4-ethylene dioxythiophene)/ poly(styrenesulfonate) (PEDO...
Injectable bioelectronics could become an alternative or a complement to traditional drug treatments...
Electrically conductive hydrogels have recently generated much attention, as they have significant p...
Bioelectronic devices enable efficient and effective communication between medical devices and human...
Functionalized poly(ethylene dioxythiophene) (f-PEDOT) was copolymerized with two vinyl monomers of ...
Poly(ethylene dioxythiophene) with functional pendant groups bearing double bonds is synthesized and...
Poly(ethylene dioxythiophene) with functional pendant groups bearing double bonds is synthesized and...
Combining electrical properties with synthetic scaffolds such as hydrogels is an attractive approach...
Poly(ethylene dioxythiophene) with functional pendant groups bearing double bonds is synthesized and...
Electroconductive hydrogels (ECHs) are highly hydrated 3D networks generated through the incorporati...
Electroconductive hydrogels are used in a wide range of biomedical applications, including electrode...
Conducting polymers (CPs) have exciting potential as scaffolds for tissue engineering, typically app...
Cross-linking biomolecules with electroconductive nanostructures through noncovalent interactions ca...
Cardiac tissue engineering is a promising strategy to treat heart failure. Yet, several issues remai...
Electroconductive hydrogels (ECHs) have attracted interest for tissue engineering applications due t...
This paper reports on the effects of poly(3,4-ethylene dioxythiophene)/ poly(styrenesulfonate) (PEDO...
Injectable bioelectronics could become an alternative or a complement to traditional drug treatments...
Electrically conductive hydrogels have recently generated much attention, as they have significant p...
Bioelectronic devices enable efficient and effective communication between medical devices and human...