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Nanostructured organosilicon luminophores for efficient and fast elementary particles photodetectors

机译:纳米结构有机硅氧化铝,用于高效和快速小学粒子的光电探测器

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Nanostructured organosilicon luminophores (NOLs) consist of two types of covalently bonded via silicon atoms organic luminophores with efficient Forster resonance energy transfer (FRET) between them. Such molecular structure allows NOLs to combine the best properties of organic luminophores and inorganic quantum dots: high absorption cross-section and photoluminescence quantum yield, large pseudo-Stokes shift, fast luminescence decay time, good solubility and processability. Thin films of NOLs or their composites with optical plastics are transparent, which leads to efficient and fast conversion of UV into visible light in different types of photodetectors and other optoelectronic devices. This paper briefly reviews recent advances in the application of NOLs as wavelength shifters (WLS) in various types of elementary particles photodetectors: liquid xenon detectors with PMT and silicon photomultipliers, plastic scintillators and scintillating fibers, pure Csl scintillators.
机译:纳米结构有机硅发光体(NOL)由两种类型的共价键合通过硅原子有机发光体,其中它们之间有有效的FORSTER共振能量转移(FRET)。这些分子结构允许NOL组合有机发光小体和无机量子点的最佳性能:高吸收横截面和光致发光量子产率,大的伪震动偏移,快速发光衰减时间,良好的溶解性和加工性。 NOL或其复合材料的薄膜或具有光学塑料的复合材料是透明的,这导致UV的高效且快速地将UV转化为不同类型的光电探测器和其他光电器件的可见光。本文简要介绍了在各种类型的基本粒子光电探测器中应用NOLS作为波长移位器(WLS)的最新进展:液体氙探测器,具有PMT和硅光倍增器,塑料闪烁体和闪烁的纤维,纯CSL闪烁体。

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