4.8 Article

Gram-Scale One-Pot Synthesis of Highly Luminescent Blue Emitting Cd1-xZnxS/ZnS Nanocrystals

Journal

CHEMISTRY OF MATERIALS
Volume 20, Issue 16, Pages 5307-5313

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/cm801201x

Keywords

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Funding

  1. Korea Science and Engineering Foundation (KOSEF)
  2. CNNC
  3. Acceleration Research Program
  4. NANO Systems Institute-National Core Research Program (NSI-NCRC)
  5. National Research Foundation of Korea [R17-2007-059-01001-0, R15-2003-032-05001-0, 과C6A1903] Funding Source: Korea Institute of Science & Technology Information (KISTI), National Science & Technology Information Service (NTIS)

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We demonstrated a facile synthesis of highly luminescent blue emitting Cd1-xZnxS/ZnS core/shell structured nanocrystals (NCs) in straightforward and reproducible manner. The alloyed Cd1-xZnxS cores with homogeneity in both size and composition were prepared by introducing S precursors (S dissolved in the noncoordinating solvent (1-octadecene)) into the mixed solution of Cd-Oleate (Cd(OA)(2)) and Zn-Oleate (Zn(OA)(2)) at elevated temperature (300 degrees C). ZnS shells were successively overcoated on the prepared cores by the second injection of S precursors (S powder dissolved in tributylphosphine, TBPS) directly into the reactor with existing alloyed Cd1-xZnxS NC cores without any purification steps. The prepared NCs exhibit strong band edge emission with high photoluminescent quantum yield (PL QY, up to 80%) and narrow spectral bandwidth (fwhm < 25 nm), which is believed to originate from the successful growth of ZnS shell layers on the Cd1-xZnxS cores and the interfacial compatibility between Cd1-xZnxS cores and the ZnS shell layers through the intradiffusion of Zn atoms from the ZnS shells into the Cd1-xZnxS cores during the shell formation reaction. The emission wavelength (PL lambda(max)) of Cd1-xZnx/ZnS core/shell NCs was finely tuned from violet (415 nm) to blue (461 nm) by adjusting the amount of S precursors in the first injection (S in 1-octadecene) and thus changing actual Cd content ratio in the alloyed Cd1-xZnxS cores (0.49 <= x <= 0.76). Furthermore, multigram (3 g) scale production of Cd1-xZnxS/ZnS core/shell NCs with narrow size distribution and spectral bandwidth was also demonstrated.

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