Organic electronic devices are considered as one of the best candidates to replace conventional inorganic electronic devices due to their electronic conductive functionality, low-cost production techniques, the ability to tune their optical and electronic properties using organic chemistry, and their mechanical flexibility. Moreover, these systems are ideal for bioelectronic applications due to their softness, biocompatibility, and most importantly, their electronic and ionic transport. Indeed, these materials are compatible with biological tissues and cells improving the signal transduction between electronic devices and electrically excitable cells. As ions serve as one of the primary signal carriers of cells, they can selectively tune a ...
The organic electronic ion pump (OEIP) is an electrically controlled polymer-based device that has t...
In the 1970s it was discovered that organic polymers, a class of materials otherwise best know as in...
Bioelectronics is an interdisciplinary field of materials science, electrical engineering, and biote...
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 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, ...
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...
In contrast to electronic systems, biology rarely uses electrons as the signal to regulate functions...
In contrast to electronic systems, biology rarely uses electrons as the signal to regulate functions...
In contrast to electronic systems, biology rarely uses electrons as the signal to regulate functions...
The organic electronic ion pump (OEIP) delivers ions and charged drugs from a source electrolyte, th...
The organic electronic ion pump (OEIP) is an electrically controlled polymer-based device that has t...
In the 1970s it was discovered that organic polymers, a class of materials otherwise best know as in...
Bioelectronics is an interdisciplinary field of materials science, electrical engineering, and biote...
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 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, ...
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...
In contrast to electronic systems, biology rarely uses electrons as the signal to regulate functions...
In contrast to electronic systems, biology rarely uses electrons as the signal to regulate functions...
In contrast to electronic systems, biology rarely uses electrons as the signal to regulate functions...
The organic electronic ion pump (OEIP) delivers ions and charged drugs from a source electrolyte, th...
The organic electronic ion pump (OEIP) is an electrically controlled polymer-based device that has t...
In the 1970s it was discovered that organic polymers, a class of materials otherwise best know as in...
Bioelectronics is an interdisciplinary field of materials science, electrical engineering, and biote...