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March 14, 2026Advanced Optical Materials0 citations

High‐Quality, Large‐Size Cs 2 ZnCl 4 Halide Perovskite Scintillation Single‐Crystal Crystallized from Water

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XLXuan LiNorth China Electric Power UniversityHWHaoxin WangNorth China Electric Power UniversityXZXue ZhaoXidian University

Key Points

  • The aim is to develop a method for growing high-quality halide perovskite single crystals for scintillation applications.
  • Developed an innovative water solution method for crystal growth.
  • Grew oversized Cs2ZnCl4 single-crystal measuring approximately 30 mm on each side.
  • Achieved exceptional crystal quality without needing ultra-pure raw materials.
  • Cs2ZnCl4 single-crystal shows a large bandgap value of 5.0 eV.
  • Exhibited significantly higher light yield and a fast scintillation decay of 1.8 ns.
  • High transmittance of approximately 90% over a wavelength range of 260 nm to 15 µm.

Abstract

ABSTRACT Halide perovskite single crystals are emerging as great candidates for scintillation detection due to their remarkable luminescent properties. However, most halide single‐crystals reported to date have been grown using the Bridgman method, and their crystal quality and properties are significantly affected by impurities, depending heavily on costly ultra‐pure raw materials. Herein, we have developed an innovative water solution method enabling the growth of oversized (∼30 × 30 × 30 mm 3 ) Cs 2 ZnCl 4 single‐crystal with natural crystal faces in water, achieving exceptional crystal quality (FWHM = 50.4'') without requiring ultra‐pure raw materials, thereby effectively resolving the challenge of high‐quality crystal growth for this single‐crystal. In marked contrast to previously reported results, the Cs 2 ZnCl 4 single‐crystal grown exhibits a larger bandgap value (5.0 eV), distinctly different single‐peak emission, higher light yield, and a fully ultrafast scintillation decay (1.8 ns). Additionally, we unexpectedly discovered that the grown Cs 2 ZnCl 4 single‐crystal exhibits high transmittance (∼90%) over an ultra‐wide wavelength range of 260 nm to 15 µm, highlighting its immense potential as a high‐performance optical window material. This research highlights the successful growth of the first halide perovskite scintillation single‐crystal (Cs 2 ZnCl 4 ) in water, which will inform the future development of other high‐performance scintillation crystals in aqueous environments.

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Cite This Study

Li et al. (2026) studied this question.

synapsesocial.com/papers/69b4fc1fb39f7826a300cd5fhttps://doi.org/10.1002/adom.202503589
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