Effect of host glass matrix on structural and optical behavior of glass-ceramic nanocomposite scintillators

被引:10
作者
Barta, M. Brooke
Nadler, Jason H.
Kang, Zhitao
Wagner, Brent K.
Rosson, Robert
Kahn, Bernd
机构
[1] Electro-Optical Systems Laboratory, Georgia Tech Research Institute, Atlanta, GA 30332
基金
美国国家科学基金会;
关键词
Glass-ceramic composite; Nanocomposite; Radiation detection; SODIUM-ALUMINOBOROSILICATE GLASSES; EARTH; SPECTROSCOPY; LUMINESCENCE; GADOLINIUM; NANOSCALE;
D O I
10.1016/j.optmat.2013.09.010
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Composite scintillator systems have received increased attention in recent years due to their promise for merging the radioisotope discrimination capabilities of single crystal scintillators with the high throughput scanning capabilities of portal monitors. However, producing the high light yield required for good energy resolution has proven challenging as scintillation photons are often scattered by variations in refractive index and agglomerated scintillator crystals within the composite. This investigation sought to mitigate these common problems by using glass-ceramic nanocomposite materials systems in which nanoscale scintillating crystallites are precipitated in a controlled manner from a transparent glass matrix. Precipitating crystallites in situ precludes nanoparticle agglomeration, and limiting crystallite size to 50 nm or less mitigates the effect of refractive index mismatch between the crystals and host glass. Cerium-doped gadolinium bromide (GdBr3(Ce)) scintillating crystals were incorporated into sodium-aluminosilicate (NAS) and alumino-borosilicate (ABS) host glass matrices, and the resulting glass-ceramic structures and luminescence behavior were characterized. The as-cast glass from the ABS system displayed a highly ordered microstructure that produced the highest luminescence intensity (light yield) of the samples studied. However, heat treating to form the glass-ceramic precipitated rare-earth oxide crystallites rather than rare-earth halides. This degraded light yield relative to the unaged sample. (C) 2013 Elsevier B.V. All rights reserved.
引用
收藏
页码:287 / 293
页数:7
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