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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >Flexible scintillation sensors for the detection of thermal neutrons based on siloxane ~6LiF containing composites: Role of ~6LiF crystals size and dispersion
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Flexible scintillation sensors for the detection of thermal neutrons based on siloxane ~6LiF containing composites: Role of ~6LiF crystals size and dispersion

机译:柔性闪烁传感器,用于检测基于含硅氧烷〜6LiF的复合材料的热中子:〜6LiF晶体尺寸和分散度的作用

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摘要

The detection of thermal neutrons is increasingly important for several fields of interest, so new versatile, manageable and adaptable detectors are needed for applications in different environments and situations. To date, scintillators for thermal neutrons available on the market are fragile and with low adaptability. In this work, flexible and robust thermal neutron scintillators with improved properties as compared to commercial ZnS:Ag based phosphors are produced. The scintillators are produced by mixing ZnS:Ag powder and (LiF)-Li-6 nano-crystals in polysiloxane binders. (LiF)-Li-6 nano-crystals are synthesized by co-precipitation method, and the detection efficiency is optimized by tuning the crystal size through different solvent/co-solvent ratios. Then, the detection yield to thermal neutrons is investigated as related both to the crystal size and to the binder. Two different siloxanes, either with pendant phenyl groups or with aliphatic groups are used, the former being intrinsically fluorescent and with higher polarizability than the latter. The response to gamma-rays is also evaluated. Lastly, the right combination of base resin and (LiF)-Li-6 crystals size allows to produce flexible scintillators for thermal neutrons with performances comparable to the commercial standard and with higher mechanical robustness and stability.
机译:热中子的检测在几个感兴趣的领域中变得越来越重要,因此对于不同环境和情况下的应用,需要新型的多功能,可管理和适应性强的检测器。迄今为止,市场上出售的用于热中子的闪烁体是脆弱的并且适应性低。在这项工作中,生产出了与商业的ZnS:Ag基磷光体相比,性能得到改善的灵活而坚固的热中子闪烁体。通过在聚硅氧烷粘合剂中混合ZnS:Ag粉和(LiF)-Li-6纳米晶体来生产闪烁体。 (LiF)-Li-6纳米晶体是通过共沉淀法合成的,通过不同溶剂/共溶剂比例调节晶体尺寸可以优化检测效率。然后,研究热中子的检出率与晶体大小和粘合剂有关。使用了具有侧苯基或脂肪族基团的两种不同的硅氧烷,前者本质上是荧光的并且具有比后者更高的极化率。还评估了对伽马射线的响应。最后,基础树脂和(LiF)-Li-6晶体尺寸的正确组合可以生产用于热中子的柔性闪烁体,其性能可与商业标准相媲美,并且具有更高的机械强度和稳定性。

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