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February 22, 2026Nuclear Engineering and Technology0 citationsOpen Access

CdSe/CdZnS Core/Shell Nanocrystal Scintillators: Light Yield, Decay Time, and Solvent Effects

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JBJihwan BooJLJaehoon LimNKNam Young Kim

Key Points

  • This research aims to enhance the light yield of semiconductor nanocrystal scintillators and assess solvent impacts.
  • Developed solvent- and polymer-free CdSe/CdZnS nanocrystal films (50–200 μm thick).
  • Evaluated γ-ray response using single-photoelectron-based measurements.
  • Investigated solvent effects through NC-doped liquid scintillators.
  • Achieved a light yield of approximately 3,200±100 photons/MeV.
  • Demonstrated a fast decay time of approximately 20 ns.
  • Observed distinct photopeaks at energies of 59.5 keV and 81.0 keV.

Abstract

Semiconductor nanocrystals (NCs) have emerged as promising candidates for next-generation scintillators owing to their tunable band gaps and high photoluminescence quantum yields (PLQYs). However, most NC-based scintillators rely on polymer or solvent matrices, in which inefficient energy transfer and self-absorption significantly limit their light yield. In this study, we developed solvent- and polymer-free CdSe/CdZnS NC films (50–200 μm thick) and quantitatively evaluated their γ-ray response and its light yield through single-photoelectron (SPE)-based measurements. The NC films preserved their intrinsic optical characteristics after fabrication and exhibited distinct photopeaks at 59.5 keV ( 241 Am) and 81.0 keV ( 133 Ba), achieving a light yield of approximately 3,200±100 photons/MeV with a fast decay time of ∼20 ns—comparable to reported NC/polymer nanocomposite scintillators. We further investigated solvent effects using NC-doped liquid scintillators, revealing the importance of solvent selection for observing measurable scintillation signals.

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Cite This Study

Boo et al. (2026) studied this question.

synapsesocial.com/papers/699a9cc6482488d673cd286chttps://doi.org/10.1016/j.net.2026.104208
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