The aim of this proposal is to explore a new concept of redox-responsive molecular materials. Electron-responsive switchable architectures have long been recognized as the most straightforward and viable choice to produce practical devices but efficiently designing such systems on the molecular scale still remains a challenge. The approach developed in this project relies on the electrochemically triggered production of pi-radicals from viologen derivatives, the objective being to induce the formation of non-covalent and reversible binding between these pi-radicals to control the conformation of supramolecular scaffolds. The nanomaterials will comprise molecular wires arising from coordination polymers and molecular wires produced by π-inte...
International audienceA metal-induced self-assembly strategy is used to promote the π-dimerization o...
National audienceThe ability to control the structure and properties of molecular materials has emer...
Redox responsive molecular self-assemblies are very important in a wide range of applications includ...
The aim of this proposal is to explore a new concept of redox-responsive molecular materials. Electr...
Le but de cette proposition est d'explorer un nouveau concept de matériaux moléculaires sensibles à ...
The aim of this thesis is to develop new approaches toward “smart” redox-responsive molecular and/or...
The aim of the thesis is to develop new concepts in the design of redox-switchable molecular and sup...
International audienceOne of the keys to the development of nanoscience is to observe, modify and co...
Conduction in organic materials is a current challenge addressed by many research groups in order to...
L’objectif de la thèse vise au développement d’architectures moléculaires et supramoléculaires commu...
La conduction dans les matériaux organiques est un défi fondamental relevé par de nombreux chercheur...
Large and complex molecular structures can be assembled by supramolecular chemistry and self-organiz...
International audienceThe key elements in the development of nanoscience are to observe, modify and ...
Redox responsive molecular self-assemblies are very important in a wide range of applications includ...
International audienceA metal-induced self-assembly strategy is used to promote the π-dimerization o...
National audienceThe ability to control the structure and properties of molecular materials has emer...
Redox responsive molecular self-assemblies are very important in a wide range of applications includ...
The aim of this proposal is to explore a new concept of redox-responsive molecular materials. Electr...
Le but de cette proposition est d'explorer un nouveau concept de matériaux moléculaires sensibles à ...
The aim of this thesis is to develop new approaches toward “smart” redox-responsive molecular and/or...
The aim of the thesis is to develop new concepts in the design of redox-switchable molecular and sup...
International audienceOne of the keys to the development of nanoscience is to observe, modify and co...
Conduction in organic materials is a current challenge addressed by many research groups in order to...
L’objectif de la thèse vise au développement d’architectures moléculaires et supramoléculaires commu...
La conduction dans les matériaux organiques est un défi fondamental relevé par de nombreux chercheur...
Large and complex molecular structures can be assembled by supramolecular chemistry and self-organiz...
International audienceThe key elements in the development of nanoscience are to observe, modify and ...
Redox responsive molecular self-assemblies are very important in a wide range of applications includ...
International audienceA metal-induced self-assembly strategy is used to promote the π-dimerization o...
National audienceThe ability to control the structure and properties of molecular materials has emer...
Redox responsive molecular self-assemblies are very important in a wide range of applications includ...