International audienceColloidal nanocrystals are an interesting platform for the design of low cost infrared optoelectronic materials. In addition to the conventionally observed interband features, doped nanocrystals present intraband transitions, which expand the possibilities for electronic spectrum engineering. In this paper, the recent results obtained in the field of mercury chalcogenides self-doped nanocrystals presenting absorption features in the mid infrared range are reviewed. In particular, the results relative to the synthesis, control of doping and transport properties of HgSe colloidal nanocrystals are discussed
Steady-state intraband transition, which is a promising electronic transition of a colloidal quantum...
International audienceHgTe nanocrystals are extremely interesting materials to obtain a highly tunab...
Intraband and plasmonic transitions have appeared over the last years as an interesting tool to achi...
International audienceIn this article we discuss the infrared properties of self-doped nanocrystals ...
Colloidal semiconductor nanocrystals are nanomaterials synthesized in solution. Below a certain size...
Self-doped colloidal quantum dots (CQDs) attract a strong interest for the design of a new generatio...
International audienceSelf-doped colloidal quantum dots (CQDs) attract a strong interest for the des...
International audienceHgTe nanocrystals are currently the most promising colloidal material for infr...
Colloidal nanocrystals are crystalline objects grown by colloidal chemistry approaches. Thanks to qu...
Beginning in the early 1980s and extending to the present, colloidal nanocrystals(NC) have become an...
International audienceInfrared applications remain too often a niche market due to their prohibitive...
Infrared photodetection based on colloidal nanoparticles is a promising path toward low-cost devices...
Mercury chalcogenide colloidal quantum dots based infrared photodetection has been intensely studied...
International audienceWavefunction engineering using intraband transition is the most versatile stra...
In a context of detectors and lasers develop-ment in infrared range, mercury chalcogenides colloidal...
Steady-state intraband transition, which is a promising electronic transition of a colloidal quantum...
International audienceHgTe nanocrystals are extremely interesting materials to obtain a highly tunab...
Intraband and plasmonic transitions have appeared over the last years as an interesting tool to achi...
International audienceIn this article we discuss the infrared properties of self-doped nanocrystals ...
Colloidal semiconductor nanocrystals are nanomaterials synthesized in solution. Below a certain size...
Self-doped colloidal quantum dots (CQDs) attract a strong interest for the design of a new generatio...
International audienceSelf-doped colloidal quantum dots (CQDs) attract a strong interest for the des...
International audienceHgTe nanocrystals are currently the most promising colloidal material for infr...
Colloidal nanocrystals are crystalline objects grown by colloidal chemistry approaches. Thanks to qu...
Beginning in the early 1980s and extending to the present, colloidal nanocrystals(NC) have become an...
International audienceInfrared applications remain too often a niche market due to their prohibitive...
Infrared photodetection based on colloidal nanoparticles is a promising path toward low-cost devices...
Mercury chalcogenide colloidal quantum dots based infrared photodetection has been intensely studied...
International audienceWavefunction engineering using intraband transition is the most versatile stra...
In a context of detectors and lasers develop-ment in infrared range, mercury chalcogenides colloidal...
Steady-state intraband transition, which is a promising electronic transition of a colloidal quantum...
International audienceHgTe nanocrystals are extremely interesting materials to obtain a highly tunab...
Intraband and plasmonic transitions have appeared over the last years as an interesting tool to achi...