Understanding phase equilibria and segregation in Bridgman growth of Cs_2LiYCl_6 scintillator
Understanding phase equilibria and segregation in Bridgman growth of Cs_2LiYCl_6 scintillator
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DOI:
10.1557/jmr.2017.168
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发表时间:
2017-06
影响因子:
2.7
通讯作者:
Francesco L. Ruta;S. Swider;S. Lam;R. Feigelson
中科院分区:
文献类型:
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作者:
Francesco L. Ruta;S. Swider;S. Lam;R. Feigelson
Cs_2LiYCl_6 (CLYC) is a commercial scintillator material having good energy resolution and dual gamma/neutron detection capabilities. CLYC crystals currently used in detectors are grown by the vertical Bridgman method. Boules grown from stoichiometric melts, however, often contain secondary phases, Cs_3YCl_6 and LiCl, at the beginning and end of the crystal, respectively, suggesting that this composition is incongruently melting. Since no phase diagram containing CLYC existed in the literature prior to this study, the Cs_2YCl_5–LiCl phase diagram was explored. Several crystals were then grown from various melt compositions. As predicted from the phase diagram, a starting composition of around 60 mol% LiCl did not produce Cs_3YCl_6 and maintained a low concentration of LiCl.