Organic electronics remains a fruitful research field thanks to the diversity of molecular structures reachable by organic synthesis. Molecular materials offer convenient shaping processes, such as solution processing techniques, which can be used for the fabrication of organic devices on plastic substrates.Our works can be summarized as the elaboration of conductometric devices thanks to electrochemistry and the study of their electrical and sensing properties. They deal with two topics: the development of new transducers based on substituted polyanilines and phthalocyanines and the study of the influence of electrochemical modifications on the behavior of known devices.We first developped polymer - phthalocyanine lateral heterojunctions u...
International audiencePolyaniline (PANI) with electrodonating and electrowithdrawing substituents we...
International audienceBased on the electrochemical properties of a series of metallophthalocyanines ...
Abstract: The conducting polymers such as polyaniline, polypyrrole and polythiophene were functional...
Organic electronics remains a fruitful research field thanks to the diversity of molecular structure...
L’électronique organique reste un domaine de recherche prolifique grâce à la diversité de structures...
International audienceThe energy barrier of an organic heterojunction built on ITO electrodes and ma...
We present a new device called a double lateral heterojunction (DLH) as an ammonia sensor in humid a...
We have prepared different hybrid polymer-phthalocyanine materials by solution processing, starting ...
International audienceMolecular semiconductor–doped insulator (MSDI) heterojunctions were designed u...
We have prepared different hybrid polymer-phthalocyanine materials by solution processing, starting ...
The molecular semiconductors have enabled the production of electronic devices such as field effect ...
International audiencePolymer film of poly(2,3,5,6-tetrafluoroaniline) (PTFA) were electroplated on ...
International audiencePolyaniline (PANI) with electrodonating and electrowithdrawing substituents we...
International audienceBased on the electrochemical properties of a series of metallophthalocyanines ...
Abstract: The conducting polymers such as polyaniline, polypyrrole and polythiophene were functional...
Organic electronics remains a fruitful research field thanks to the diversity of molecular structure...
L’électronique organique reste un domaine de recherche prolifique grâce à la diversité de structures...
International audienceThe energy barrier of an organic heterojunction built on ITO electrodes and ma...
We present a new device called a double lateral heterojunction (DLH) as an ammonia sensor in humid a...
We have prepared different hybrid polymer-phthalocyanine materials by solution processing, starting ...
International audienceMolecular semiconductor–doped insulator (MSDI) heterojunctions were designed u...
We have prepared different hybrid polymer-phthalocyanine materials by solution processing, starting ...
The molecular semiconductors have enabled the production of electronic devices such as field effect ...
International audiencePolymer film of poly(2,3,5,6-tetrafluoroaniline) (PTFA) were electroplated on ...
International audiencePolyaniline (PANI) with electrodonating and electrowithdrawing substituents we...
International audienceBased on the electrochemical properties of a series of metallophthalocyanines ...
Abstract: The conducting polymers such as polyaniline, polypyrrole and polythiophene were functional...