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July 16, 2026Bulletin of the Chemical Society of Japan0 citations

Microwave-assisted hydrothermal synthesis of water-soluble AgInS2 quantum dots with enhanced photoluminescence

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KFKazuto FukudaTNTaisuke NakataniYFYusuke Funakawa

Key Points

  • This research aims to optimize the hydrothermal synthesis of water-soluble AgInS2 quantum dots for enhanced photoluminescence.
  • Investigated precursor composition, pH, ligand concentration, and reaction temperature.
  • Achieved optimal synthesis conditions for AgInS2 quantum dots with ligands, resulting in a PLQY of 32%.
  • Applied ZnS treatment to improve photoluminescence quantum yield to 68%..
  • Achieved a PLQY of 32% for optimized AgInS2 quantum dots in aqueous solution.
  • ZnS treatment enhanced PLQY to 68%.
  • Structural analysis confirmed chalcopyrite-type formation and ZnS shell presence.

Abstract

Abstract We systematically investigated the hydrothermal synthesis of water-soluble AgInS2 (AIS) quantum dots (QDs) using N-acetyl-L-cysteine ligands, focusing on the effects of precursor composition, pH, ligand concentration, and reaction temperature on photoluminescence (PL) properties. Optimization of the precursor solution enabled the synthesis of AIS QDs with a PL quantum yield (QY) of 32% in aqueous solution. Furthermore, ZnS treatment significantly enhanced the PLQY to 68%. Structural analyses using X-ray diffraction, transmission electron microscopy, and X-ray photoelectron spectroscopy confirmed the formation of chalcopyrite-type AIS QDs and suggested the presence of Zn-containing surface species consistent with ZnS shell formation. PL decay measurements suggested that the broad PL of AIS QDs is consistent with donor–acceptor-pair-related emission, and optimization of precursor composition was suggested to suppress non-radiative recombination. These results provide important insights for the direct synthesis and PL enhancement of water-soluble cadmium-free QDs.

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Cite This Study

Fukuda et al. (2026) studied this question.

synapsesocial.com/papers/6a5875502b46c88ba9ad1143https://doi.org/10.1093/bulcsj/uoag098
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