The application of light-emitting field-effect transistors (LEFET) is an elegant way of combining electrical switching and light emission in a single device architecture instead of two. This allows for a higher degree of miniaturization and integration in future optoelectronic applications. Here, we report on a LEFET based on lead sulfide quantum dots processed from solution. Our device shows state-of-the-art electronic behavior and emits near infrared photons with a quantum yield exceeding 1% when cooled. We furthermore show how LEFETs can be used to simultaneously characterize the optical and electrical material properties on the same device and use this benefit dot film. to investigate the charge transport through the quantum dot film.</...
In this work colloidal quantum dots double gate transistors are introduced. A high-k (k = 43) relaxo...
The use of colloidal quantum dots (CQDs) as active layers for the transistors in integrated circuits...
Abstract: A photoluminescence measurement setup was constructed to investigate on the optical emitt...
The application of light-emitting field-effect transistors (LEFET) is an elegant way of combining el...
The application of light-emitting field-effect transistors (LEFET) is an elegant way of combining el...
Light-emitting field-effect transistors (LEFETs) are emerging optoelectronic devices able to display...
Colloidal quantum dots (QDs) recently triggered great attention from the optoelectronics community d...
For the application of colloidal semiconductor quantum dots in optoelectronic devices, for example, ...
In this progress report, the recent work in the field of light-emitting field-effect transistors (LE...
Semiconductor quantum dots (QDs) exhibit remarkable properties, which include a size-tunable band ga...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Materials Science and Engineeri...
In this work colloidal quantum dots double gate transistors are introduced. A high-k (k = 43) relaxo...
The use of colloidal quantum dots (CQDs) as active layers for the transistors in integrated circuits...
Abstract: A photoluminescence measurement setup was constructed to investigate on the optical emitt...
The application of light-emitting field-effect transistors (LEFET) is an elegant way of combining el...
The application of light-emitting field-effect transistors (LEFET) is an elegant way of combining el...
Light-emitting field-effect transistors (LEFETs) are emerging optoelectronic devices able to display...
Colloidal quantum dots (QDs) recently triggered great attention from the optoelectronics community d...
For the application of colloidal semiconductor quantum dots in optoelectronic devices, for example, ...
In this progress report, the recent work in the field of light-emitting field-effect transistors (LE...
Semiconductor quantum dots (QDs) exhibit remarkable properties, which include a size-tunable band ga...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Materials Science and Engineeri...
In this work colloidal quantum dots double gate transistors are introduced. A high-k (k = 43) relaxo...
The use of colloidal quantum dots (CQDs) as active layers for the transistors in integrated circuits...
Abstract: A photoluminescence measurement setup was constructed to investigate on the optical emitt...