Conducting polymers (CPs) are organic semiconductors that have gained popularity in more recent years as components of bioelectronic devices designed to electrically communicate with biological environments. Synergy between the material and biological tissue, both on a structural and functional level, is paramount for the proper performance of an implantable biomedical device. As such, significant progress has been made on understanding the fundamental impact of the molecular and macro structure of CPs on their functional properties such as conductivity and charge mobility. At the same time, the development of a variety of synthetic approaches has yielded a library of CPs with improved mechanical and electronic properties. Specifically, che...
Organic electronic materials have been considered for a wide-range of technological applications. Mo...
Organic electronic materials have been considered for a wide-range of technological applications. Mo...
In the search for understanding and communicating with all biological systems, in humans, animals, p...
Conducting polymers (CPs) are organic semiconductors that have gained popularity in more recent year...
For the majority of biosensors or biomedical devices, immobilization of the biorecognition element i...
Conducting polymers (CPs) have attracted significant attention in a variety of research fields, part...
The field of organic bioelectronics is advancing rapidly in the development of materials and devices...
The field of organic bioelectronics is advancing rapidly in the development of materials and devices...
The identification and development of materials that find application in biomedical applications has...
International audienceConducting polymers are an exciting class of organic electronic materials, whi...
The emergence of organic electronics – a technology that relies on carbon-based semiconductors to de...
Initially polymers were mainly used in the packaging and insulation. But past few decades has seen n...
AbstractDeveloping stimulus-responsive biomaterials with easy-to-tailor properties is a highly desir...
Abstract. Biomolecular electronics is rapidly evolving from physics, chemistry, biology, electron-ic...
Conducting polymers (CPs) are composed of distinct macromolecular units bonded to each other by weak...
Organic electronic materials have been considered for a wide-range of technological applications. Mo...
Organic electronic materials have been considered for a wide-range of technological applications. Mo...
In the search for understanding and communicating with all biological systems, in humans, animals, p...
Conducting polymers (CPs) are organic semiconductors that have gained popularity in more recent year...
For the majority of biosensors or biomedical devices, immobilization of the biorecognition element i...
Conducting polymers (CPs) have attracted significant attention in a variety of research fields, part...
The field of organic bioelectronics is advancing rapidly in the development of materials and devices...
The field of organic bioelectronics is advancing rapidly in the development of materials and devices...
The identification and development of materials that find application in biomedical applications has...
International audienceConducting polymers are an exciting class of organic electronic materials, whi...
The emergence of organic electronics – a technology that relies on carbon-based semiconductors to de...
Initially polymers were mainly used in the packaging and insulation. But past few decades has seen n...
AbstractDeveloping stimulus-responsive biomaterials with easy-to-tailor properties is a highly desir...
Abstract. Biomolecular electronics is rapidly evolving from physics, chemistry, biology, electron-ic...
Conducting polymers (CPs) are composed of distinct macromolecular units bonded to each other by weak...
Organic electronic materials have been considered for a wide-range of technological applications. Mo...
Organic electronic materials have been considered for a wide-range of technological applications. Mo...
In the search for understanding and communicating with all biological systems, in humans, animals, p...