Nanocomposites for low dose gamma-ray sensor: Effect of matrix and oxidizer on the performance (Conference Presentation)

V. Dayal, N. Singh, C. Su, P. Gill, Brit Lee, F. Choa, B. Arnold, L. Kelly, B. Cullum
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Abstract

Synthesis and crystal growth of scintillators and semiconductor materials for radiation detectors have been proven to be time consuming and very costly. Several alternative crystals such as Tl3ASSe3, TlGaSe2, Tl4HgI6, PbSe(1-x)Ix have developed in our laboratory. These heavy metal and high Z based compounds have shown great promise. We have been working on some innovative approaches based on Cerenkov radiation and nanocomposites of ionizing organics for faster and efficient sensors. By combining some metallic oxides with an organic material, it should be possible to both extend the energy range of particles capable of being detected while also providing more discrimination for high energy gamma-rays, based on local secondary effects in the surrounding organic matrix. We have been working with a highly ionizing organic compound p-chloranil (2,3,5,6-Tetrachloro-1,4-benzoquinone) matrix. In addition, we have determined effect of oxidizing compounds MnO2 on urea-based composites. We use metal oxide as active ingredient in this matrix. We will present effect of morphology and processing on the performance of nanocomposite for sensing gamma-rays.
用于低剂量伽马射线传感器的纳米复合材料:基质和氧化剂对性能的影响(会议报告)
用于辐射探测器的闪烁体和半导体材料的合成和晶体生长已被证明是耗时且非常昂贵的。我们的实验室已经开发了几种替代晶体,如Tl3ASSe3, TlGaSe2, Tl4HgI6, PbSe(1-x)Ix。这些重金属和高Z基化合物显示出很大的前景。我们一直在研究一些基于切伦科夫辐射和电离有机纳米复合材料的创新方法,以实现更快、更高效的传感器。通过将一些金属氧化物与有机材料相结合,既可以扩展能够被探测到的粒子的能量范围,又可以基于周围有机基质的局部二次效应,为高能伽马射线提供更多的辨别能力。我们一直在研究一种高度电离的有机化合物对氯胺(2,3,5,6-四氯-1,4-苯醌)基质。此外,我们还确定了氧化性化合物MnO2对尿素基复合材料的影响。我们使用金属氧化物作为这种基质的活性成分。我们将介绍形貌和加工对纳米复合材料的性能的影响。
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