Semiconductor quantum dots are inorganic nanoparticles which, because of their unique size-dependent electronic properties, are of high potential interest for the construction of functional nanodevices. Photoinduced electron and energy-transfer processes between quantum dots and surface-bound molecular species offer versatile strategies to implement functionalities such as luminescence sensing and switching. In this article we discuss the general principles underlying the rational design of this kind of multicomponent species. Successively, we illustrate a few prominent examples, taken from the recent literature, of luminescent chemosensors and switches based on quantum dots derivatized with redox- or photo-active molecular species
none1noSemiconductor quantum dots are inorganic nanoparticles which, because of their unique size-de...
open2noSemiconductor quantum dots (QDs) are inorganic nanoparticles that exhibit unique size-depende...
Semiconductor quantum dots (QDs) as a new class of fluorescent labels have become valuable fluoresce...
Semiconductor quantum dots are inorganic nanoparticles which, because of their unique size-dependent...
Semiconductor quantum dots possess unique size-dependent electronic properties and are of high poten...
Semiconductor quantum dots possess unique size-dependent electronic properties and are of high poten...
Semiconductor quantum dots possess unique size-dependent electronic properties and are of high poten...
Semiconductor quantum dots are inorganic nanocrystals which, because of their unique size-dependent ...
Semiconductor quantum dots are inorganic nanocrystals which, because of their unique size-dependent ...
Semiconductor quantum dots are inorganic nanocrystals which, because of their unique size-dependent ...
Semiconductor quantum dots (QDs) are inorganic nanoparticles that exhibit unique size-dependent opt...
Semiconductor quantum dots (QDs) are inorganic nanoparticles that exhibit unique size-dependent opt...
Semiconductor quantum dots are inorganic nanoparticles which, because of their unique size-dependent...
Semiconductor quantum dots are inorganic nanoparticles which, because of their unique size-dependent...
A new strategy was developed to switch the luminescence of semiconductor quantum dots with chemical ...
none1noSemiconductor quantum dots are inorganic nanoparticles which, because of their unique size-de...
open2noSemiconductor quantum dots (QDs) are inorganic nanoparticles that exhibit unique size-depende...
Semiconductor quantum dots (QDs) as a new class of fluorescent labels have become valuable fluoresce...
Semiconductor quantum dots are inorganic nanoparticles which, because of their unique size-dependent...
Semiconductor quantum dots possess unique size-dependent electronic properties and are of high poten...
Semiconductor quantum dots possess unique size-dependent electronic properties and are of high poten...
Semiconductor quantum dots possess unique size-dependent electronic properties and are of high poten...
Semiconductor quantum dots are inorganic nanocrystals which, because of their unique size-dependent ...
Semiconductor quantum dots are inorganic nanocrystals which, because of their unique size-dependent ...
Semiconductor quantum dots are inorganic nanocrystals which, because of their unique size-dependent ...
Semiconductor quantum dots (QDs) are inorganic nanoparticles that exhibit unique size-dependent opt...
Semiconductor quantum dots (QDs) are inorganic nanoparticles that exhibit unique size-dependent opt...
Semiconductor quantum dots are inorganic nanoparticles which, because of their unique size-dependent...
Semiconductor quantum dots are inorganic nanoparticles which, because of their unique size-dependent...
A new strategy was developed to switch the luminescence of semiconductor quantum dots with chemical ...
none1noSemiconductor quantum dots are inorganic nanoparticles which, because of their unique size-de...
open2noSemiconductor quantum dots (QDs) are inorganic nanoparticles that exhibit unique size-depende...
Semiconductor quantum dots (QDs) as a new class of fluorescent labels have become valuable fluoresce...