Colloidal quantum dots are a class of solution processed semiconductors with good prospects for photovoltaic and optoelectronic applications. Removal of the surfactant, so-called ligand exchange, is a crucial step in making the solid films conductive, but performing it in solid state introduces surface defects and cracks in the films. Hence, the formation of thick, device-grade films have only been possible through layer-by-layer processing, limiting the technological interest for quantum dot solids. Solution-phase ligand exchange before the deposition allows for the direct deposition of thick, homogeneous films suitable for device applications. In this work, fabrication of field-effect transistors in a single step is reported using blade-c...
Using an optimized lift-off process we develop a technique for both nanoscale and single-dot pattern...
Control over carrier type and doping levels in semiconductor materials is key for optoelectronic app...
Control over carrier type and doping levels in semiconductor materials is key for optoelectronic app...
Colloidal quantum dots are a class of solution-processed semiconductors with good prospects for phot...
Colloidal quantum dots are a class of solution processed semiconductors with good prospects for phot...
Colloidal quantum dots are a class of solution processed semiconductors with good prospects for phot...
Colloidal quantum dots are a class of solution processed semiconductors with good prospects for phot...
Colloidal quantum dots are a class of solution processed semiconductors with good prospects for phot...
Colloidal quantum dots are a class of solution processed semiconductors with good prospects for phot...
Colloidal quantum dot films have seen rapid progress as active materials in photodetection, light em...
Colloidal quantum dot (QD) systems offer distinct optical and electronic properties that are not eas...
Understanding colloidal stabilization can influence the design of optoelectronic devices and enable ...
Understanding colloidal stabilization can influence the design of optoelectronic devices and enable ...
The micropatterning of layers of colloidal quantum dots (QDs) stabilized by inorganic ligands is dem...
Control over carrier type and doping levels in semiconductor materials is key for optoelectronic app...
Using an optimized lift-off process we develop a technique for both nanoscale and single-dot pattern...
Control over carrier type and doping levels in semiconductor materials is key for optoelectronic app...
Control over carrier type and doping levels in semiconductor materials is key for optoelectronic app...
Colloidal quantum dots are a class of solution-processed semiconductors with good prospects for phot...
Colloidal quantum dots are a class of solution processed semiconductors with good prospects for phot...
Colloidal quantum dots are a class of solution processed semiconductors with good prospects for phot...
Colloidal quantum dots are a class of solution processed semiconductors with good prospects for phot...
Colloidal quantum dots are a class of solution processed semiconductors with good prospects for phot...
Colloidal quantum dots are a class of solution processed semiconductors with good prospects for phot...
Colloidal quantum dot films have seen rapid progress as active materials in photodetection, light em...
Colloidal quantum dot (QD) systems offer distinct optical and electronic properties that are not eas...
Understanding colloidal stabilization can influence the design of optoelectronic devices and enable ...
Understanding colloidal stabilization can influence the design of optoelectronic devices and enable ...
The micropatterning of layers of colloidal quantum dots (QDs) stabilized by inorganic ligands is dem...
Control over carrier type and doping levels in semiconductor materials is key for optoelectronic app...
Using an optimized lift-off process we develop a technique for both nanoscale and single-dot pattern...
Control over carrier type and doping levels in semiconductor materials is key for optoelectronic app...
Control over carrier type and doping levels in semiconductor materials is key for optoelectronic app...