作为基质材料的掺硼-10 聚硅氧烷在同时探测和识别伽马射线及快中子和热中子中的应用

IF 1.9 3区 工程技术 Q3 ENGINEERING, ELECTRICAL & ELECTRONIC IEEE Transactions on Nuclear Science Pub Date : 2024-09-09 DOI:10.1109/TNS.2024.3456709
Caleb Chandler;Mackenzie Duce;Jonathan Arrue;Dominique Porcincula;Alan Sellinger;Anna S. Erickson
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引用次数: 0

摘要

我们合成了三种富含硼-10 的芳香族分子,并将其加入到两种不同的商用聚硅氧烷树脂(Shin Etsu KER-6000 和 Wacker SilRes H62-C)中。测试了闪烁荧光团--9,9-二甲基-2-苯基芴(PhF)和 2,5-二苯基恶唑(PPO)与每种树脂和硼-10 分子的组合,以同时检测伽马射线、快中子和热中子。H62-C 树脂能够溶解大量 PhF,超过 20 wt%。通过向 H62-C 树脂中添加二乙烯基苯 (DVB) 和苯基三(二甲基硅氧烷)硅烷 (PTDMSS) 交联剂溶液来控制固化动力学,流变学实验表明,当添加 20 wt% 的交联剂溶液时,凝胶化时间大大缩短,从 4 小时以上缩短到 1 小时以内。这些聚硅氧烷树脂可在空气中 3 小时固化,而普通聚乙烯醇缩闪烁体至少需要四天的加热和无氧条件。掺有 PhF 的 KER-6000 与硼酸频哪醇甲苯酯的总体性能最佳,与 EJ-200 相比,光产率 (LY) 为 62%,热中子俘获能量高达 103 keVee(EJ254B-5 为 84 keVee)。此外,有四个样品的光产率超过了行业标准的掺硼塑料闪烁体,即 Eljen 的 EJ254B-5。在十个月的时间里,KER-6000 样品出现了掺杂分子沉淀,使其 LY 平均降低了 15%,而 H62-C 则更为稳定,仅降低了 6%。
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Boron-10-Doped Polysiloxanes as Matrix Materials for Application in the Simultaneous Detection and Discrimination of Gamma Rays and Fast and Thermal Neutrons
Three boron-10 enriched aromatic molecules have been synthesized and incorporated into two different commercial polysiloxane resins, Shin Etsu KER-6000 and Wacker SilRes H62-C. Scintillating fluorophores, 9,9-dimethyl-2-phenylfluorene (PhF) and 2,5-diphenyloxazole (PPO), were tested in combination with each resin and boron-10 molecule for the simultaneous detection of gamma rays, fast neutrons, and thermal neutrons. The H62-C resin was able to solubilize a large amount of PhF, in excess of 20 wt%. Cure kinetics were controlled through the addition of divinylbenzene (DVB) and phenyl tris(dimethylsiloxy)silane (PTDMSS) crosslinker solution to the H62-C resin, with rheology experiments demonstrating a large reduction in time to gelation when 20 wt% crosslinker solution was added, from more than 4 h to less than 1 h. These polysiloxane resins can be cured in 3 h under air, while common poly(vinyltoluene) scintillators require at least four days of heating and oxygen-free conditions. PhF-doped KER-6000 with tolyl boronate pinacol ester exhibited the best overall performance with a light yield (LY) of 62% relative to EJ-200 and thermal neutron capture at energies up to 103 keVee (84 keVee for EJ254B-5). In addition, four samples exhibited LYs surpassing an industry-standard boron-doped plastic scintillator, Eljen’s EJ254B-5. Over the course of ten months, the KER-6000 samples showed precipitation of dopant molecules, which reduced their LY by 15% on average, while H62-C proved to be more stable with only a 6% reduction.
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来源期刊
IEEE Transactions on Nuclear Science
IEEE Transactions on Nuclear Science 工程技术-工程:电子与电气
CiteScore
3.70
自引率
27.80%
发文量
314
审稿时长
6.2 months
期刊介绍: The IEEE Transactions on Nuclear Science is a publication of the IEEE Nuclear and Plasma Sciences Society. It is viewed as the primary source of technical information in many of the areas it covers. As judged by JCR impact factor, TNS consistently ranks in the top five journals in the category of Nuclear Science & Technology. It has one of the higher immediacy indices, indicating that the information it publishes is viewed as timely, and has a relatively long citation half-life, indicating that the published information also is viewed as valuable for a number of years. The IEEE Transactions on Nuclear Science is published bimonthly. Its scope includes all aspects of the theory and application of nuclear science and engineering. It focuses on instrumentation for the detection and measurement of ionizing radiation; particle accelerators and their controls; nuclear medicine and its application; effects of radiation on materials, components, and systems; reactor instrumentation and controls; and measurement of radiation in space.
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