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Hybrid Nanoparticle-Polymer Brush Composites for Detection of Low-Level Radiostrontium in Water

机译:混合Nanoparticle-Polymer刷复合材料检测的低放射性锶在水里

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摘要

Combining extraction and scintillation properties within the same material is a relatively new approach in development of sensors for detection of radioactive elements. Structural organization of such materials at a nanoscale typically offers higher efficiency of detection and shorter response time. In this contribution, several new protocols are discussed for fabrication of stable extractive scintillating systems based on commercial Superlig 620 (SL) material with high affinity to radiostrontium. Application of hybrid organic-inorganic beads with SL particles used as core and halloysite clay nanotubes (HNT) modified with a polyvinyltoluene (PVT) brush as a permeable shell combines high-performance extracting properties of the SL material with efficient light emission properties of the polymer scintillator. The developed SL-HNT-PVT hybrid extractive scintillating material allows real-time detection of low-level concentrations of radiostrontium in water. Moreover, the suggested approach is not limited to detection of Sr but can find broader application in development of chemical, biological, or radioluminescent sensors and multifunctional materials.
机译:结合提取和闪烁的属性在相同的材料是一种相对较新的方法在开发检测的传感器的放射性元素。这样的材料在纳米尺度通常提供更高效率的检测和短响应时间。协议是制造稳定的讨论萃取闪烁系统基于商业Superlig 620 (SL)材料具有高放射性锶的亲和力。有机-无机和SL粒子用作珠子核心和埃洛石粘土纳米管(HNT)修改polyvinyltoluene (PVT)刷透水层结合高性能提取SL材料的属性高效的发光性质聚合物闪烁体。混合萃取闪烁材料允许低浓度的实时检测在水中的放射性锶。建议的方法是不限于检测老但可以找到更广泛的应用开发的化学,生物或radioluminescent传感器和多功能材料。

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