Welcome to Journal of Synthetic Crystals! Today is Share:

Journal of Synthetic Crystals ›› 2025, Vol. 54 ›› Issue (11): 1931-1936.DOI: 10.16553/j.cnki.issn1000-985x.2025.0103

• Research Articles • Previous Articles     Next Articles

Growth and Scintillation Properties of Eu2+-Doped Cs2BaBr4 Crystals

YIN Jie1(), ZHANG Xiaoqiang2, CHEN Can2, PAN Jianguo2()   

  1. 1. Hunan Research Center of Inorganic High Purity Nano Powder Materials Development and Application Engineering,Hunan Chemical Vocational Technical College,Zhuzhou 412000,China
    2. Key Laboratory of Photoelectric Detection Materials and Devices of Zhejiang Province,School of Materials Science and Chemical Engineering,Ningbo University,Ningbo 315211,China
  • Received:2025-05-17 Online:2025-11-20 Published:2025-12-11

Abstract: Cs2BaBr4:x% Eu2+x=1, 2, 4, 8) crystals were successfully grown by Bridgman method. Phase analysis was performed by X-ray powder diffraction and thermogravimetric testing.The results indicate that the crystals are congruently melting compounds. As the concentration of Eu2+ increases, the diffraction peaks shift toward smaller angles. The optical and scintillation properties of the crystals were investigated by measuring the optical transmittance, photo luminescence, X-ray induced luminescence and decay time. And a comparative analysis of the hygroscopicity of the crystal with Rb2BaBr4 and LaBr3 crystals was conducted. The results reveal that crystals doped with different concentrations all exhibit good optical transmittance, and the optical transmittance of Cs2BaBr4:2% Eu2+ crystal is up to 87.5%. Under the excitation of ultraviolet light and X-rays, these crystals exhibit an emission peak in the range of 425~445 nm. Under ultraviolet excitation, the decay time of crystals with different doping concentrations is 2.10, 1.57, 2.19, and 2.76 μs, respectively. Cs2BaBr4:2% Eu2+ crystal exhibits the best scintillation performance. In addition, Cs2BaBr4 crystals exhibit low hygroscopicity.

Key words: Cs2BaBr4 crystal; scintillation crystal; Bridgman method; scintillation property; photo luminescence; X-ray induced luminescence; decay time; hygroscopicity

CLC Number: