高密度纳米粒子负载聚合物复合闪烁体光产率增强的原因

Irene Villa, Angelo Monguzzi, Roberto Lorenzi, Matteo Orfano, Vladimir Babin, František Hájek, Karla Kuldová, Romana Kučerková, Alena Beitlerová, Ilaria Mattei, Hana Buresova, Radek Pjatkan, Václav Čuba, Lenka Prouzová Procházková, Martin Nikl
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引用次数: 0

摘要

在需要信噪比大的高速探测器的先进应用中,需要使用快速发射的聚合物闪烁体。然而,其密度低意味着对高能量辐射的阻止能力弱,因此光输出和灵敏度有限。为了提高闪烁体的性能,可以在聚合物闪烁体中添加致密的纳米粒子(NPs)。我们通过光致发光和闪烁光谱研究了一系列聚合物闪烁体的特性,比较了标准闪烁体和负载致密二氧化铪(HfO2)NPs 的复合系统。这种纳米复合材料的闪烁产率提高了 100%,而且时间响应不变。我们首次对这一效应进行了解释,指出了 NPs 在与电离辐射相互作用时产生发射态的局部效应。研究结果表明,快速共轭发射体与光学惰性致密 NPs 的耦合可以超越纯聚合物闪烁体的实际极限。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
On the origin of the light yield enhancement in polymeric composite scintillators loaded with dense nanoparticles
Fast emitting polymeric scintillators are requested in advanced applications where high-speed detectors with large signal-to-noise ratio are needed. However, their low density implies a weak stopping power of high energy radiations, thus a limited light output and sensitivity. To enhance their performances, polymeric scintillators can be loaded with dense nanoparticles (NPs). We investigate the properties of a series of polymeric scintillators by means of photoluminescence and scintillation spectroscopy, comparing standard scintillators with a composite system loaded with dense hafnium dioxide (HfO2) NPs. The nanocomposite shows a scintillation yield enhancement of +100% with unchanged time response. We provide for the first time an interpretation of this effect, pointing out the local effect of NPs in the generation of emissive states upon interaction with the ionizing radiation. The obtained results indicate that coupling of fast conjugated emitters with optically inert dense NPs could allow to surpass the actual limits of pure polymeric scintillators.
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