Through recent discoveries and new knowledge among correlations between molecular biology and materials science, it is a growing interest to design new biomaterials able to interact—i.e., to influence, to guide or to detect—with cells and their surrounding microenvironments, in order to better control biological phenomena. In this context, electro-active polymers (EAPs) are showing great promise as biomaterials acting as an interface between electronics and biology. This is ascribable to the highly tunability of chemical/physical properties which confer them different conductive properties for various applicative uses (i.e., molecular targeting, biosensors, biocompatible scaffolds). This review article is divided into three parts: the first...
AbstractDeveloping stimulus-responsive biomaterials with easy-to-tailor properties is a highly desir...
Conducting polymers (CPs) are organic semiconductors that have gained popularity in more recent year...
Organic bioelectronics forms the basis of conductive polymer tools with great potential for applicat...
Through recent discoveries and new knowledge among correlations between molecular biology and materi...
Smart materials are a group of materials that exhibit the ability to change their composition or str...
Initially polymers were mainly used in the packaging and insulation. But past few decades has seen n...
Giving fundamental information on one of the most promising families of smart materials, electroacti...
Electroactive polymers (EAPs) consist of synthetic materials capable of changing dimensions and/or s...
The field of organic bioelectronics is advancing rapidly in the development of materials and devices...
International audienceConducting polymers are an exciting class of organic electronic materials, whi...
Cell membranes are integral to the functioning of the cell and are therefore key to drive fundamenta...
Conducting polymers (CPs) have attracted significant attention in a variety of research fields, part...
The identification and development of materials that find application in biomedical applications has...
© 2019 by the authors.The flexibility in polymer properties has allowed the development of a broad r...
Since the Nobel Prize awarded discovery that some polymers or “plastics” can be made electronically ...
AbstractDeveloping stimulus-responsive biomaterials with easy-to-tailor properties is a highly desir...
Conducting polymers (CPs) are organic semiconductors that have gained popularity in more recent year...
Organic bioelectronics forms the basis of conductive polymer tools with great potential for applicat...
Through recent discoveries and new knowledge among correlations between molecular biology and materi...
Smart materials are a group of materials that exhibit the ability to change their composition or str...
Initially polymers were mainly used in the packaging and insulation. But past few decades has seen n...
Giving fundamental information on one of the most promising families of smart materials, electroacti...
Electroactive polymers (EAPs) consist of synthetic materials capable of changing dimensions and/or s...
The field of organic bioelectronics is advancing rapidly in the development of materials and devices...
International audienceConducting polymers are an exciting class of organic electronic materials, whi...
Cell membranes are integral to the functioning of the cell and are therefore key to drive fundamenta...
Conducting polymers (CPs) have attracted significant attention in a variety of research fields, part...
The identification and development of materials that find application in biomedical applications has...
© 2019 by the authors.The flexibility in polymer properties has allowed the development of a broad r...
Since the Nobel Prize awarded discovery that some polymers or “plastics” can be made electronically ...
AbstractDeveloping stimulus-responsive biomaterials with easy-to-tailor properties is a highly desir...
Conducting polymers (CPs) are organic semiconductors that have gained popularity in more recent year...
Organic bioelectronics forms the basis of conductive polymer tools with great potential for applicat...