The reversible photoisomerization of azobenzene has been utilized to construct a plethora of systems in which optical, electronic, catalytic, and other properties can be controlled by light. However, owing to azobenzene’s hydrophobic nature, most of these examples have been realized only in organic solvents, and systems operating in water are relatively scarce. Here, we show that by coadsorbing the inherently hydrophobic azobenzenes with water-solubilizing ligands on the same nanoparticulate platforms, it is possible to render them essentially water-soluble. To this end, we developed a modified nanoparticle functionalization procedure allowing us to precisely fine-tune the amount of azobenzene on the functionalized nanoparticles. Molecular ...
Photoswitchable molecules are employed for many applications, from the development of active materia...
We present a successful attempt of decoupling a dye molecule from a metallic surface via physisorpti...
Photoswitchable molecules are employed for many applications, from the development of active materia...
The reversible photoisomerization of azobenzene has been utilized to construct a plethora of systems...
The development of nanoscale systems capable to perform specific functions under external control is...
An amphiphilic phosphodiester-linked azobenzene trimer has been exploited in the development of stim...
An easy to synthesize azobenzene based amphiphile spontaneously self-assembles into monodisperse nan...
2siAzobenzene is one of the most studied light-controlled molecular switches and it has been incorpo...
The development of multicomponent chemical systems that can perform predetermined functions under e...
Photoswitching in densely packed azobenzene self-assembled monolayers (SAMs) is strongly affected by...
Certain molecules (photochromic compounds), when exposed to the light of a specific wavelength, unde...
International audienceHypothesis: Switchable assemblies relevant for bio-applications may be accesse...
Azobenzene is a prototypical molecular switch that can be reversibly photoisomerized between the nea...
The aim of this work is to investigate the mechanism of photoisomerization of an azobenzenic chromop...
Photoresponsive molecules that incorporate peptides capable of material-specific recognition provide...
Photoswitchable molecules are employed for many applications, from the development of active materia...
We present a successful attempt of decoupling a dye molecule from a metallic surface via physisorpti...
Photoswitchable molecules are employed for many applications, from the development of active materia...
The reversible photoisomerization of azobenzene has been utilized to construct a plethora of systems...
The development of nanoscale systems capable to perform specific functions under external control is...
An amphiphilic phosphodiester-linked azobenzene trimer has been exploited in the development of stim...
An easy to synthesize azobenzene based amphiphile spontaneously self-assembles into monodisperse nan...
2siAzobenzene is one of the most studied light-controlled molecular switches and it has been incorpo...
The development of multicomponent chemical systems that can perform predetermined functions under e...
Photoswitching in densely packed azobenzene self-assembled monolayers (SAMs) is strongly affected by...
Certain molecules (photochromic compounds), when exposed to the light of a specific wavelength, unde...
International audienceHypothesis: Switchable assemblies relevant for bio-applications may be accesse...
Azobenzene is a prototypical molecular switch that can be reversibly photoisomerized between the nea...
The aim of this work is to investigate the mechanism of photoisomerization of an azobenzenic chromop...
Photoresponsive molecules that incorporate peptides capable of material-specific recognition provide...
Photoswitchable molecules are employed for many applications, from the development of active materia...
We present a successful attempt of decoupling a dye molecule from a metallic surface via physisorpti...
Photoswitchable molecules are employed for many applications, from the development of active materia...