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Photoluminescence quenching of conjugated polymer nanocomposites for gamma ray detection

机译:共轭聚合物纳米复合材料的光致发光猝灭,用于γ射线检测

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摘要

The high atomic number of bismuth iodide and the high-sensitivity photoluminescence quenching of conjugated polymers are leveraged in their nanocomposites for the detection of high-energy photons. With the introduction of oleylamine, the composites can be processed from solutions in organic solvent into high-quality films containing as much as 50 wt% BiI3. BiI3 in the resulting ternary composites is dispersed on a nanoscale or smaller, allowing the formation of transparent composites. Oleylamine was found to form an interfacial layer between the polymer matrix and BiI3 nanodomains to block charge transfer between BiI3 and the polymer. Upon gamma ray exposure, the luminescent intensity of the ternary composites decreased linearly with the radiation dosage.
机译:碘化铋的高原子数和共轭聚合物的高灵敏度光致发光猝灭被用于其纳米复合材料中以检测高能光子。随着油胺的引入,可以将复合物从有机溶剂中的溶液加工成含有多达50 wt%BiI3的高质量薄膜。所得三元复合材料中的BiI3分散在纳米级或更小的纳米级上,从而可以形成透明的复合材料。发现油酰胺在聚合物基质和BiI3纳米域之间形成界面层,以阻止BiI3和聚合物之间的电荷转移。在γ射线照射下,三元复合物的发光强度随辐射剂量线性降低。

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