Light, as a versatile and non-invasive means to elicit a physiological response, offers solutions to problems in basic research as well as in biomedical technologies. The complexity and limitations of optogenetic methods motivate research and development of optoelectronic alternatives. A recently growing subset of approaches relies on organic semiconductors as the active light absorber. Organic semiconductors stand out due to their high optical absorbance coefficients, mechanical flexibility, ability to operate in a wet environment, and potential biocompatibility. They could enable ultrathin and minimally invasive form factors not accessible with traditional inorganic materials. Organic semiconductors, upon photoexcitation in an aqueous med...
Recent advances in light-responsive materials enabled the development of devices that can wirelessly...
An efficient nanoscale semiconducting optoelectronic system is reported, which is optimized for neur...
An efficient nanoscale semiconducting optoelectronic system is reported, which is optimized for neur...
Light, as a versatile and non-invasive means to elicit a physiological response, offers solutions to...
Light, as a versatile and non-invasive means to elicit a physiological response, offers solutions to...
Light, as a versatile and non-invasive means to elicit a physiological response, offers solutions to...
Photoactive organic semiconductor substrates are envisioned as a novel class of bioelectronic device...
Photoactive organic semiconductor substrates are envisioned as a novel class of bioelectronic device...
Modulating the cell membrane potential provides an opportunity to control electrical signaling that ...
Modulating the cell membrane potential provides an opportunity to control electrical signaling that ...
Modulating the cell membrane potential provides an opportunity to control electrical signaling that ...
Modulating the cell membrane potential provides an opportunity to control electrical signaling that ...
Organic semiconductor materials have vast commercial potential for a wide range of applications, fro...
Photoactive organic semiconductors are envisioned as a novel class of materials able to transduce li...
Photoactive organic semiconductors are envisioned as a novel class of materials able to transduce li...
Recent advances in light-responsive materials enabled the development of devices that can wirelessly...
An efficient nanoscale semiconducting optoelectronic system is reported, which is optimized for neur...
An efficient nanoscale semiconducting optoelectronic system is reported, which is optimized for neur...
Light, as a versatile and non-invasive means to elicit a physiological response, offers solutions to...
Light, as a versatile and non-invasive means to elicit a physiological response, offers solutions to...
Light, as a versatile and non-invasive means to elicit a physiological response, offers solutions to...
Photoactive organic semiconductor substrates are envisioned as a novel class of bioelectronic device...
Photoactive organic semiconductor substrates are envisioned as a novel class of bioelectronic device...
Modulating the cell membrane potential provides an opportunity to control electrical signaling that ...
Modulating the cell membrane potential provides an opportunity to control electrical signaling that ...
Modulating the cell membrane potential provides an opportunity to control electrical signaling that ...
Modulating the cell membrane potential provides an opportunity to control electrical signaling that ...
Organic semiconductor materials have vast commercial potential for a wide range of applications, fro...
Photoactive organic semiconductors are envisioned as a novel class of materials able to transduce li...
Photoactive organic semiconductors are envisioned as a novel class of materials able to transduce li...
Recent advances in light-responsive materials enabled the development of devices that can wirelessly...
An efficient nanoscale semiconducting optoelectronic system is reported, which is optimized for neur...
An efficient nanoscale semiconducting optoelectronic system is reported, which is optimized for neur...