Molecular photoswitches triggered with red or NIR light are optimal for photomodulation of complex biological systems, including efficient penetration of the human body for therapeutic purposes (“therapeutic window”). Yet, they are rarely reported, and even more rarely functional under aqueous conditions. In this work, fluorinated azobenzenes are shown to exhibit efficient E→Z photoisomerization with red light (PSS660nm >75 % Z) upon conjugation with unsaturated substituents. Initially demonstrated for aldehyde groups, this effect was also observed in a more complex structure by incorporating the chromophore into a cyclic dipeptide with propensity for self-assembly. Under physiological conditions, the latter molecule formed a supramolecular...
A straightforward synthesis of azobenzenes with bathochromically-shifted absorption bands is present...
Red-shifted azobenzene scaffolds have emerged as useful molecular photoswitches to expand potential ...
The photoisomerization of azobenzenes provides a general means for the photocontrol of molecular str...
Tetra-ortho-fluoro-azobenzenes are a class of photoswitches useful for the construction of visible-l...
Azobenzene derivatives are a class of molecular switches that have found broad use in photocontrol o...
We computationally dissected the electronic and geometrical influences of ortho-chlorinated azobenze...
We report the first example of direct far-red triplet sensitized molecular photoswitching in a conde...
Azobenzenes are archetypal molecules that have a central role in fundamental and applied research. O...
A new family of biomimetic photoactivated molecular switches based in the retinal chromophore is des...
Tetra-ortho-fluoro-azobenzenes are a class of photoswitches useful for the construction of visible-l...
Photoisomerization of azobenzene can be used to reversibly photo-control peptide and protein structu...
Azobenzenes have been used for almost half a century to impart spatiotemporal control on biological ...
A straightforward synthesis of azobenzenes with bathochromically-shifted absorption bands is present...
Red-shifted azobenzene scaffolds have emerged as useful molecular photoswitches to expand potential ...
The photoisomerization of azobenzenes provides a general means for the photocontrol of molecular str...
Tetra-ortho-fluoro-azobenzenes are a class of photoswitches useful for the construction of visible-l...
Azobenzene derivatives are a class of molecular switches that have found broad use in photocontrol o...
We computationally dissected the electronic and geometrical influences of ortho-chlorinated azobenze...
We report the first example of direct far-red triplet sensitized molecular photoswitching in a conde...
Azobenzenes are archetypal molecules that have a central role in fundamental and applied research. O...
A new family of biomimetic photoactivated molecular switches based in the retinal chromophore is des...
Tetra-ortho-fluoro-azobenzenes are a class of photoswitches useful for the construction of visible-l...
Photoisomerization of azobenzene can be used to reversibly photo-control peptide and protein structu...
Azobenzenes have been used for almost half a century to impart spatiotemporal control on biological ...
A straightforward synthesis of azobenzenes with bathochromically-shifted absorption bands is present...
Red-shifted azobenzene scaffolds have emerged as useful molecular photoswitches to expand potential ...
The photoisomerization of azobenzenes provides a general means for the photocontrol of molecular str...