论文标题

Ultrafast混合纳米复合闪烁剂:评论

Ultrafast hybrid nanocomposite scintillators: a review

论文作者

Shevelev, V. S., Ishchenko, A. V., Vanetsev, A. S., Nagirnyi, V., Omelkov, S. I.

论文摘要

近年来,在高能物理和医学成像应用中出现了对具有较高时间分辨率的闪烁探测器的需求。特别是,飞行正电子发射断层扫描(TOF-PET)的时间可以从增加闪烁体的时间分辨率中受益匪浅,这会导致信噪比的增加,患者剂量的减少以及实现PET图像的上空间分辨率的实现。当前,对各种类型的材料进行了广泛的研究,以实现最佳时间分辨率。在这篇综述中,总结了各种方法的最新进展,并首先审查具有最佳时间特征的闪烁化合物。该评论介绍了无机和有机材料中引起快速发光的物理过程。特别注意纳米复合材料,这些纳米复合材料属于新的闪光材料类别,包括塑料基质,无机纳米晶体填充剂以及有机或无机发光激活剂和变速杆。还讨论了现有和前瞻性纳米复合闪烁体的所有部分的主要功能。审查了许多当前创建和研究的纳米复合材料,这些材料具有各种化合物和结构。

In recent years, demand for scintillation detectors with high time resolution (better than 100 ps) has emerged in high-energy physics and medical imaging applications. In particular, time of flight positron emission tomography (TOF-PET) can greatly benefit from increasing time resolution of scintillators, which leads to the increase of signal-to-noise ratio, decrease of patient dose, and achievement of the superior spatial resolution of PET images. Currently, extensive research of various types of materials is carried out to achieve the best time resolution. In this review, the recent progress of various approaches is summarized and scintillation compounds with the best temporal characteristics are first reviewed. The review presents the physical processes causing fast luminescence in inorganic and organic materials. Special attention is paid to nanocomposites which belong to a new perspective class of scintillating materials, consisting of a plastic matrix, inorganic nanocrystalline fillers, and organic or inorganic luminescence activators and shifters. The main features and functions of all parts of existing and prospective nanocomposite scintillators are also discussed. A number of currently created and investigated nanocomposite materials with various compounds and structures are reviewed.

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