Organic electronic ion pumps (OEIPs) are versatile tools for electrophoretic delivery of substances with high spatiotemporal resolution. To date, OEIPs and similar iontronic components have been fabricated using thin-film techniques and often rely on laborious, multistep photolithographic processes. OEIPs have been demonstrated in a variety of in vitro and in vivo settings for controlling biological systems, but the thin-film form factor and limited repertoire of polyelectrolyte materials and device fabrication techniques unnecessarily constrain the possibilities for miniaturization and extremely localized substance delivery, e.g., the greater range of pharmaceutical compounds, on the scale of a single cell. Here, we demonstrate an entirely...
Biological systems rarely use electrons as signal regulators, most of the transport and communicatio...
Biological systems rarely use electrons as signal regulators, most of the transport and communicatio...
Biological systems use a large variety of ions and molecules of different sizes for signaling. Preci...
Organic electronic ion pumps (OEIPs) are versatile tools for electrophoretic delivery of substances ...
Organic electronic ion pumps (OEIPs) are versatile tools for electrophoretic delivery of substances ...
Organic electronic ion pumps (OEIPs) are versatile tools for electrophoretic delivery of substances ...
Organic electronic ion pumps (OEIPs) have been used for delivery of biological signaling compounds, ...
Organic electronic ion pumps (OEIPs) have been used for delivery of biological signaling compounds, ...
Organic electronic ion pumps (OEIPs) have been used for delivery of biological signaling compounds, ...
Organic electronic ion pumps (OEIPs) have been used for delivery of biological signaling compounds, ...
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...
Organic electronic ion pumps (OEIPs) have been investigated as a promising solution for precise loca...
Organic electronic ion pumps (OEIPs) have been investigated as a promising solution for precise loca...
Biological systems rarely use electrons as signal regulators, most of the transport and communicatio...
Biological systems rarely use electrons as signal regulators, most of the transport and communicatio...
Biological systems use a large variety of ions and molecules of different sizes for signaling. Preci...
Organic electronic ion pumps (OEIPs) are versatile tools for electrophoretic delivery of substances ...
Organic electronic ion pumps (OEIPs) are versatile tools for electrophoretic delivery of substances ...
Organic electronic ion pumps (OEIPs) are versatile tools for electrophoretic delivery of substances ...
Organic electronic ion pumps (OEIPs) have been used for delivery of biological signaling compounds, ...
Organic electronic ion pumps (OEIPs) have been used for delivery of biological signaling compounds, ...
Organic electronic ion pumps (OEIPs) have been used for delivery of biological signaling compounds, ...
Organic electronic ion pumps (OEIPs) have been used for delivery of biological signaling compounds, ...
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...
Organic electronic ion pumps (OEIPs) have been investigated as a promising solution for precise loca...
Organic electronic ion pumps (OEIPs) have been investigated as a promising solution for precise loca...
Biological systems rarely use electrons as signal regulators, most of the transport and communicatio...
Biological systems rarely use electrons as signal regulators, most of the transport and communicatio...
Biological systems use a large variety of ions and molecules of different sizes for signaling. Preci...