The organic electronic ion pump (OEIP) is an emerging bioelectronic technology for on-demand and local delivery of pharmacologically active species, especially targeting alkali ions, and neurotransmitters. While electrical control is advantageous for providing precise spatial, temporal, and quantitative delivery, traditionally, it necessitates wiring. This complicates implantation. Herein, we demonstrate integration of an OEIP with a photovoltaic driver on a flexible carrier, which can be addressed by red light within the tissue transparency window. Organic thin-film bilayer photovoltaic pixels are arranged in series and/or vertical tandem to provide the 2.5–4.5 V necessary for operating the high-resistance electrophoretic ion pumps. We dem...
A miniaturized organic electronic ion pump (OEIP) based on conjugated polymers is developed for deli...
A miniaturized organic electronic ion pump (OEIP) based on conjugated polymers is developed for deli...
Electronic control of biological processes with bioelectronic devices holds promise for sophisticate...
The organic electronic ion pump (OEIP) is an emerging bioelectronic technology for on-demand and loc...
The organic electronic ion pump (OEIP) is an emerging bioelectronic technology for on-demand and loc...
The use of electronic devices in medical care is one of the main targets of precision medicine. The ...
Organic electronic devices are considered as one of the best candidates to replace conventional inor...
Organic electronic devices are considered as one of the best candidates to replace conventional inor...
Organic electronic devices are considered as one of the best candidates to replace conventional inor...
The organic electronic ion pump (OEIP) is an electrically controlled polymer-based device that has t...
Current technologies for cell stimulation suffer from a variety of drawbacks. Indeed, precise, local...
Attempts to interface human-made systems with neural systems are commonly based on direct electrical...
Attempts to interface human-made systems with neural systems are commonly based on direct electrical...
Electronic control of biological processes with bioelectronic devices holds promise for sophisticate...
A miniaturized organic electronic ion pump (OEIP) based on conjugated polymers is developed for deli...
A miniaturized organic electronic ion pump (OEIP) based on conjugated polymers is developed for deli...
A miniaturized organic electronic ion pump (OEIP) based on conjugated polymers is developed for deli...
Electronic control of biological processes with bioelectronic devices holds promise for sophisticate...
The organic electronic ion pump (OEIP) is an emerging bioelectronic technology for on-demand and loc...
The organic electronic ion pump (OEIP) is an emerging bioelectronic technology for on-demand and loc...
The use of electronic devices in medical care is one of the main targets of precision medicine. The ...
Organic electronic devices are considered as one of the best candidates to replace conventional inor...
Organic electronic devices are considered as one of the best candidates to replace conventional inor...
Organic electronic devices are considered as one of the best candidates to replace conventional inor...
The organic electronic ion pump (OEIP) is an electrically controlled polymer-based device that has t...
Current technologies for cell stimulation suffer from a variety of drawbacks. Indeed, precise, local...
Attempts to interface human-made systems with neural systems are commonly based on direct electrical...
Attempts to interface human-made systems with neural systems are commonly based on direct electrical...
Electronic control of biological processes with bioelectronic devices holds promise for sophisticate...
A miniaturized organic electronic ion pump (OEIP) based on conjugated polymers is developed for deli...
A miniaturized organic electronic ion pump (OEIP) based on conjugated polymers is developed for deli...
A miniaturized organic electronic ion pump (OEIP) based on conjugated polymers is developed for deli...
Electronic control of biological processes with bioelectronic devices holds promise for sophisticate...