Among bistable photochromic molecules, diarylethenes (DAEs) possess the distinct feature that upon photoisomerization they undergo a large modulation of their pelectronic system, accompanied by a marked shift of the HOMO/LUMO energies and hence oxidation/reduction potentials. The electronic modulation can be utilized to remote-control charge-as well as energy-transfer processes and it can be transduced to functional entities adjacent to the DAE core, thereby regulating their properties. In order to exploit such photoswitchable systems it is important to precisely adjust the absolute position of their HOMO and LUMO levels and to maximize the extent of the photoinduced shifts of these energy levels. Here, we present a comprehensive study deta...
Here we present a molecular architecture that can reversibly change the geometric conformation of it...
International audienceIn single photochromes, the two isomers that are interconverted in photoinduce...
Molecular photoswitches enable reversible external control of biological systems, nanomachines, and ...
Among bistable photochromic molecules, diarylethenes (DAEs) possess the distinct feature that upon p...
Among bistable photochromic molecules, diarylethenes (DAEs) possess the distinct feature that upon p...
Operating photoswitchable molecules repetitively and reliably is crucial for most of their applicati...
Light-switching induced changes in the electronic properties of photochromic diarylethene, i.e., 1,2...
A diarylethene photoswitch was covalently connected to two small triplet sensitizer moieties in a co...
Diarylethenes are molecular switches, the state of which can efficiently be controlled by illuminat...
Photoactive molecules that reversibly switch upon visible light irradiation are one of the most attr...
Diarylethene (DAE) photoswitches are one of the most promising families of photochromic molecules be...
Coupling semiconducting nanocrystals (NCs) with organic molecules provides an efficient route to gen...
Previous studies showed that the trans-cis isomerization of azobenzene (azo) molecules can be used t...
Diarylethenes (DAE) are a class of photochromic molecular switches that convert between two structur...
Diarylethene photochromic switches use light to drive structural changes through reversible electroc...
Here we present a molecular architecture that can reversibly change the geometric conformation of it...
International audienceIn single photochromes, the two isomers that are interconverted in photoinduce...
Molecular photoswitches enable reversible external control of biological systems, nanomachines, and ...
Among bistable photochromic molecules, diarylethenes (DAEs) possess the distinct feature that upon p...
Among bistable photochromic molecules, diarylethenes (DAEs) possess the distinct feature that upon p...
Operating photoswitchable molecules repetitively and reliably is crucial for most of their applicati...
Light-switching induced changes in the electronic properties of photochromic diarylethene, i.e., 1,2...
A diarylethene photoswitch was covalently connected to two small triplet sensitizer moieties in a co...
Diarylethenes are molecular switches, the state of which can efficiently be controlled by illuminat...
Photoactive molecules that reversibly switch upon visible light irradiation are one of the most attr...
Diarylethene (DAE) photoswitches are one of the most promising families of photochromic molecules be...
Coupling semiconducting nanocrystals (NCs) with organic molecules provides an efficient route to gen...
Previous studies showed that the trans-cis isomerization of azobenzene (azo) molecules can be used t...
Diarylethenes (DAE) are a class of photochromic molecular switches that convert between two structur...
Diarylethene photochromic switches use light to drive structural changes through reversible electroc...
Here we present a molecular architecture that can reversibly change the geometric conformation of it...
International audienceIn single photochromes, the two isomers that are interconverted in photoinduce...
Molecular photoswitches enable reversible external control of biological systems, nanomachines, and ...