Exciton-harvesting enabled efficient charged particle detection in zero-dimensional halides.

IF 19.4 1区 物理与天体物理 Q1 Physics and Astronomy Light, science & applications Pub Date : 2024-08-14 DOI:10.1038/s41377-024-01532-z
Qian Wang, Chenger Wang, Hongliang Shi, Jie Chen, Junye Yang, Alena Beitlerova, Romana Kucerkova, Zhengyang Zhou, Yunyun Li, Martin Nikl, Xilei Sun, Xiaoping OuYang, Yuntao Wu
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Abstract

Materials for radiation detection are critically important and urgently demanded in diverse fields, starting from fundamental scientific research to medical diagnostics, homeland security, and environmental monitoring. Low-dimensional halides (LDHs) exhibiting efficient self-trapped exciton (STE) emission with high photoluminescence quantum yield (PLQY) have recently shown a great potential as scintillators. However, an overlooked issue of exciton-exciton interaction in LDHs under ionizing radiation hinders the broadening of its radiation detection applications. Here, we demonstrate an exceptional enhancement of exciton-harvesting efficiency in zero-dimensional (0D) Cs3Cu2I5:Tl halide single crystals by forming strongly localized Tl-bound excitons. Because of the suppression of non-radiative exciton-exciton interaction, an excellent α/β pulse-shape-discrimination (PSD) figure-of-merit (FoM) factor of 2.64, a superior rejection ratio of 10-9, and a high scintillation yield of 26 000 photons MeV-1 under 5.49 MeV α-ray are achieved in Cs3Cu2I5:Tl single crystals, outperforming the commercial ZnS:Ag/PVT composites for charged particle detection applications. Furthermore, a radiation detector prototype based on Cs3Cu2I5:Tl single crystal demonstrates the capability of identifying radioactive 220Rn gas for environmental radiation monitoring applications. We believe that the exciton-harvesting strategy proposed here can greatly boost the applications of LDHs materials.

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利用激子捕获技术实现了零维卤化物中带电粒子的高效检测。
从基础科学研究到医疗诊断、国土安全和环境监测等各个领域,对辐射探测材料都有着极其重要和迫切的需求。低维卤化物(LDHs)具有高效的自俘获激子(STE)发射和高光致发光量子产率(PLQY),最近已显示出作为闪烁体的巨大潜力。然而,LDHs 在电离辐射下的激子-激子相互作用问题却被忽视,这阻碍了其辐射探测应用的拓展。在这里,我们展示了零维(0D)Cs3Cu2I5:Tl 卤化物单晶中通过形成强局域 Tl 结合激子而显著提高的激子收集效率。由于抑制了非辐射激子-激子相互作用,Cs3Cu2I5:Tl 单晶实现了出色的 α/β 脉冲波形判别(PSD)系数(FoM)2.64、优越的剔除比 10-9,以及在 5.49 MeV α 射线下 26 000 光子 MeV-1 的高闪烁产率,在带电粒子探测应用方面优于商用 ZnS:Ag/PVT 复合材料。此外,基于 Cs3Cu2I5:Tl 单晶的辐射探测器原型展示了在环境辐射监测应用中识别放射性 220Rn 气体的能力。我们相信,本文提出的激子收集策略能极大地促进 LDHs 材料的应用。
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来源期刊
CiteScore
27.00
自引率
2.60%
发文量
331
审稿时长
20 weeks
期刊介绍: Light: Science & Applications is an open-access, fully peer-reviewed publication.It publishes high-quality optics and photonics research globally, covering fundamental research and important issues in engineering and applied sciences related to optics and photonics.
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