Boming Yang, Xiao Ouyang, Xue Zhao, Jie Su, Yang Li, Siyu Zhang, Xiaoping Ouyang
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Herein, we propose an optimal crystal growth strategy and obtain an inch-sized high-quality (PEA)<sub>2</sub>PbBr<sub>4</sub> single crystals (SCs) with a record dimension of 4.60 cm × 3.80 cm × 0.19 cm. Their application as synergistic scintillators in high-energy rays and charged particles detection are investigated, which exhibit high light yield (38 600 photons MeV<sup>−1</sup>) and ultra-fast decay times that are 4.89, 27.98, and 3.84 ns under the 375-nm laser, γ-ray, and α particles, respectively. 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引用次数: 0
摘要
核辐射探测器在瞬态核反应成像、医学诊断成像、安全检查、工业检查等方面至关重要,但许多潜在用途受到闪烁体尺寸的限制。目前的闪烁晶体受到长期存在的异晶形成问题的限制,因此晶体尺寸和质量较差。特别是,由于重元素和高氢密度基团的存在,杂化有机-无机钙钛矿(HOIPs)在x射线和快中子下在单一框架内表现出闪烁能力。然而,晶体生长技术阻碍了HOIPs闪烁体实现高性能、大面积成像。在此,我们提出了一种最佳晶体生长策略,并获得了一英寸大小的高质量(PEA)2PbBr4单晶(SCs),其记录尺寸为4.60 cm × 3.80 cm × 0.19 cm。研究了它们作为协同闪烁体在高能射线和带电粒子探测中的应用,在375 nm激光、γ射线和α粒子下,它们具有高产光率(38600光子MeV−1)和超快衰减时间(分别为4.89、27.98和3.84 ns)。此外,(PEA)2PbBr4 SCs对x射线和快中子的空间分辨率分别达到了23.2 lp mm−1 (MTF = 20%)和2.00 lp mm−1,超过了已有报道的钙钛矿闪烁体。
Inch-sized 2D perovskite single-crystal scintillators for high-resolution neutron and X-ray imaging
Nuclear radiation detectors are critical to transient nuclear reaction imaging, medical diagnostic imaging, security checks, industry inspection, and so forth, with many potential uses limited by scintillator dimensions. Current scintillator crystals are limited by the long-standing issues of hetero-crystalline formation and consequently inferior crystal dimensions and quality. Particularly, the hybrid organic–inorganic perovskites (HOIPs) exhibit scintillation capability under X-ray and fast neutrons within a single framework, owing to the presence of heavy elements and high hydrogen density groups, respectively. However, the achievement of high-performance and large-area imaging by HOIPs scintillators is impeded by the crystal growth technology. Herein, we propose an optimal crystal growth strategy and obtain an inch-sized high-quality (PEA)2PbBr4 single crystals (SCs) with a record dimension of 4.60 cm × 3.80 cm × 0.19 cm. Their application as synergistic scintillators in high-energy rays and charged particles detection are investigated, which exhibit high light yield (38 600 photons MeV−1) and ultra-fast decay times that are 4.89, 27.98, and 3.84 ns under the 375-nm laser, γ-ray, and α particles, respectively. Moreover, the (PEA)2PbBr4 SCs demonstrate a remarkably high spatial resolution of 23.2 lp mm−1 (at MTF = 20%) for X-ray and 2.00 lp mm−1 for fast neutrons, surpassing the reported perovskites scintillators.
期刊介绍:
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