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- W2921992313 abstract "Abstract Micron‐scale resolution patterning of colloidal quantum dots (QDs) is demonstrated by adopting inkjet printing as a technique that is solvent and room temperature compatible, maintains optical and electronic properties of printed QD films, and results in minimal materials waste during the deposition process. With a combination of solvent engineering and substrate patterning single prints of PbS–CdS core–shell QDs (with peak photoluminescence emission at λ = 1270 nm wavelength) are deployed to form QD films of nanoscale‐thickness, with regular micron‐scale patterns. Inkjet printing of infrared QD films is chosen as a case study for manufacture of QD‐light emitting diodes (QD‐LEDs), and demonstrates devices with a record peak external quantum efficiency in excess of 2% that is finally comparable with state‐of‐the‐art spin‐coated prototypes." @default.
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- W2921992313 date "2019-03-06" @default.
- W2921992313 modified "2023-10-18" @default.
- W2921992313 title "Micron‐Scale Patterning of High Quantum Yield Quantum Dot LEDs" @default.
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- W2921992313 doi "https://doi.org/10.1002/admt.201800727" @default.
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