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ARI-MA: Investigation of Energy Transfer Based Nanocomposites For Radiation Detection

ARI-MA: Investigation of Energy Transfer Based Nanocomposites For Radiation Detection
ARI-MA:用于辐射检测的基于能量转移的纳米复合材料的研究
批准号:
1039068
负责人:
Wei Chen
金额:
$25.38万
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2010
资助国家:
美国
项目状态:
已结题
起止时间:
2010-09-15 至 2011-08-31

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中文摘要
翻译
摘要1039068陈伟得克萨斯大学/阿灵顿这项跨学科的建议汇集了纳米物理学,粒子物理学和核工程的专业知识,以开发一种新型的辐射探测器,同时建立一个强大的学术计划,国土安全部通过综合研究和教育活动在得克萨斯大学,阿灵顿。铈掺杂的纳米复合材料已显示出作为发光剂的前景,但通常在紫外线(UV)中发射,并且难以转化为均匀和透明的晶体。 PI建议使用能量转移到量子点,将紫外线发射转换为可见光范围,并开发将纳米粒子封装在薄膜中的方法,然后将其结合成晶体,形成实用的探测器。 各种参数,如量子点的尺寸和结晶过程的细节,提供了重大的技术挑战,但展示一种新的闪烁体结合纳米复合材料的理想性能,如高阻止能力,高灵敏度和优异的能量分辨率,与量子点的高量子效率和短衰变寿命的回报是潜在的巨大的。 用这些新的纳米复合晶体取代传统晶体将产生更广泛的影响,允许对核材料进行低剂量检测,以帮助防止放射性材料非法运输到美国。
英文摘要
Abstract1039068Wei ChenUniversity of Texas/ArlingtonThis interdisciplinary proposal brings together expertise in nanophysics, particle physics, and nuclear engineering to develop a novel radiation detector, while simultaneously establishing a strong academic program for Homeland Security through integrated research and education activities at the University of Texas, Arlington. Cerium-doped nanocomposites have shown promise as scintillators, but typically emit in the ultraviolet (UV) and are difficult to convert into uniform and transparent crystals. The PI proposes to use energy transfer to quantum dots to convert the UV emission into the visible range, and to develop methods for encapsulating nanoparticles in thin films that can then be combined into crystals to form practical detectors. Various parameters, such as the size of the quantum dots and the details of the crystallization process, provide significant technical challenges, but the payoff of demonstrating a new scintillator combining the desirable properties of nanocomposites, such as high stopping power, high sensitivity, and excellent energy resolution, with the high quantum efficiency and short decay lifetime of quantum dots is potentially enormous. Replacing traditional crystals with these new nanocomposite crystals would have a huge broader impact, allowing low dose detection of nuclear materials to help prevent the illicit transport of radiological materials into the United States.
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