This thesis examines the design and synthesis of a new class of biomimetic switches that replicate different aspect of the Z/E photoisomerization of rhodopsin. Theoretical studies on rhodopsin showed that a penta-2,4-dieniminium moiety is the minimal structure responsible of the photochemical properties of the visual pigment. By trapping this π system into conformational rigid molecules we synthesized NAIP (N-alkylated indanylidene-pyrroline Schiff base) switches featuring a selective and ultra-fast light-driven E/Z photoisomerization. Computational and spectroscopic studies performed on the particular NAIPzw, have shown it constitutes the prototype of a novel generation of electrostatic switches potentially capable to influence the ...
Rhodopsins are photoreceptive proteins using light to drive a plethora of biological functions such ...
Bacteriorhodopsin represents the simplest, and possibly most abundant, phototropic system requiring ...
Rhodopsins are photoreceptive proteins using light to drive a plethora of biological functions such ...
The biological function of Rhodopsin (Rh), the G-protein-coupled photoreceptor responsible for twili...
Our work is devoted to the synthesis of new biomimetic molecular switches, capable to convert light...
We have shown that nonnatural protonated Schiff bases constitute prototypes for the development of ...
We report the results of a multidisciplinary research effort where the methods of computational phot...
We report the outcomes of our recent computational and experimental work for the development of a no...
We report the results of a multidisciplinary research effort where the methods of computational phot...
Protonated Schiff bases (PSBs) of polyenals constitute a class of light-driven switchers selected b...
International audienceWe report the results of a multidisciplinary research effort where the methods...
The need for a detailed mechanistic understanding of the photoisomerization of retinal chromophore (...
We report the results of a multidisciplinary research effort where the methods of computational phot...
Reversible photocontrol of biomolecules requires chromophores that can efficiently undergo large con...
Designing and testing biomimetic switches: Multireference perturbation theory is used to model a lig...
Rhodopsins are photoreceptive proteins using light to drive a plethora of biological functions such ...
Bacteriorhodopsin represents the simplest, and possibly most abundant, phototropic system requiring ...
Rhodopsins are photoreceptive proteins using light to drive a plethora of biological functions such ...
The biological function of Rhodopsin (Rh), the G-protein-coupled photoreceptor responsible for twili...
Our work is devoted to the synthesis of new biomimetic molecular switches, capable to convert light...
We have shown that nonnatural protonated Schiff bases constitute prototypes for the development of ...
We report the results of a multidisciplinary research effort where the methods of computational phot...
We report the outcomes of our recent computational and experimental work for the development of a no...
We report the results of a multidisciplinary research effort where the methods of computational phot...
Protonated Schiff bases (PSBs) of polyenals constitute a class of light-driven switchers selected b...
International audienceWe report the results of a multidisciplinary research effort where the methods...
The need for a detailed mechanistic understanding of the photoisomerization of retinal chromophore (...
We report the results of a multidisciplinary research effort where the methods of computational phot...
Reversible photocontrol of biomolecules requires chromophores that can efficiently undergo large con...
Designing and testing biomimetic switches: Multireference perturbation theory is used to model a lig...
Rhodopsins are photoreceptive proteins using light to drive a plethora of biological functions such ...
Bacteriorhodopsin represents the simplest, and possibly most abundant, phototropic system requiring ...
Rhodopsins are photoreceptive proteins using light to drive a plethora of biological functions such ...