: Organic semiconductors have shown great potential as efficient bioelectronic materials. Specifically, photovoltaic polymers such as the workhorse poly(thiophene) derivatives, when stimulated with visible light, can depolarize neurons and generate action potentials, an effect that has been also employed for rescuing vision in blind rats. In this context, however, the coupling of such materials with optically resonant structures to enhance those photodriven biological effects is still in its infancy. Here, we employ the optical coupling between a nanostructured metasurface and poly(3-hexylthiophene) (P3HT) to improve the bioelectronic effects occurring upon photostimulation at the abiotic-biotic interface. In particular, we designed a spect...
Graphene conductive properties have been long exploited in the field of organic photovoltaics and op...
Using a particle swarm optimization algorithm and finite-difference in time-domain simulations, we o...
We report an alternative approach to enhance the photoresponsivity of an organic phototransistor by ...
: Organic semiconductors have shown great potential as efficient bioelectronic materials. Specifical...
Interfacing organic electronics with biological substrates offers new possibilities for biotechnolog...
Recent advances in biomedical engineering have led to a growing worldwide effort to develop a retina...
Recent studies have shown that p-type polymeric semiconductors enable a new type of wireless, optica...
Resumen del trabajo presentado al 8th Forum on New Materials - CIMTEC, celebrado en Perugia (Italia)...
The most common strategies to control electrical activity in living cells are based on electrical or...
Current implant technology uses electrical signals at the electrode-neural interface. This rather in...
The bypassing of degenerated photoreceptors using retinal neurostimulators is helping the blind to r...
Hybrid interfaces between organic semiconductors and living tissues represent a new tool for in-vitr...
Poly(3-hexylthiophene) (P3HT) is a hole-conducting polymer that has been intensively used to develop...
Graphene conductive properties have been long exploited in the field of organic photovoltaics and op...
Using a particle swarm optimization algorithm and finite-difference in time-domain simulations, we o...
We report an alternative approach to enhance the photoresponsivity of an organic phototransistor by ...
: Organic semiconductors have shown great potential as efficient bioelectronic materials. Specifical...
Interfacing organic electronics with biological substrates offers new possibilities for biotechnolog...
Recent advances in biomedical engineering have led to a growing worldwide effort to develop a retina...
Recent studies have shown that p-type polymeric semiconductors enable a new type of wireless, optica...
Resumen del trabajo presentado al 8th Forum on New Materials - CIMTEC, celebrado en Perugia (Italia)...
The most common strategies to control electrical activity in living cells are based on electrical or...
Current implant technology uses electrical signals at the electrode-neural interface. This rather in...
The bypassing of degenerated photoreceptors using retinal neurostimulators is helping the blind to r...
Hybrid interfaces between organic semiconductors and living tissues represent a new tool for in-vitr...
Poly(3-hexylthiophene) (P3HT) is a hole-conducting polymer that has been intensively used to develop...
Graphene conductive properties have been long exploited in the field of organic photovoltaics and op...
Using a particle swarm optimization algorithm and finite-difference in time-domain simulations, we o...
We report an alternative approach to enhance the photoresponsivity of an organic phototransistor by ...