Bright Red Luminescence from Ag–In–Ga–S-Based Quantum Dots with the Introduction of Copper

This study presents cadmium-free, red-emission quantum dots (QDs) synthesized by incorporating Cu into silver indium gallium sulfide/gallium sulfide (Ag–In–Ga–S/Ga–S) core/shell QDs. By using a previous technique, in which the original Ag–In–Ga–S/Ga–S core/shell QDs exhibiting band-edge photolumines...

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Veröffentlicht in:Bulletin of the Chemical Society of Japan 2023-11, Vol.96 (11), p.1274-1282
Hauptverfasser: Uematsu, Taro, Krobkrong, Navapat, Asai, Kenichiro, Motomura, Genichi, Fujisaki, Yoshihide, Torimoto, Tsukasa, Kuwabata, Susumu
Format: Artikel
Sprache:eng
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Zusammenfassung:This study presents cadmium-free, red-emission quantum dots (QDs) synthesized by incorporating Cu into silver indium gallium sulfide/gallium sulfide (Ag–In–Ga–S/Ga–S) core/shell QDs. By using a previous technique, in which the original Ag–In–Ga–S/Ga–S core/shell QDs exhibiting band-edge photoluminescence (PL) were improved to achieve a narrower emission and facile synthesis, we injected a mixture of Cu and Ag sources into a heated solution containing In, Ga, and S sources. This resulted in the formation of Ag–Cu–In–Ga–S quinary QDs without any precipitation. After being coated with a Ga–S shell, these QDs exhibit a red PL with a spectral full-width at half maximum of 55–60 nm. Although the PL wavelength was responsive to changes in In/Ga ratios, it was unaffected by variations in Cu/Ag ratios due to the transition between conduction band electrons and holes localized at Cu cites. Notably, the electroluminescence device exhibited high-purity red light that satisfies the recommendation ITU-R BT.2020 standard.
ISSN:0009-2673
1348-0634
DOI:10.1246/bcsj.20230216