Temperature dependent scintillation properties and mechanisms of (PEA)<sub>2</sub>PbBr<sub>4</sub> single crystals

激发态 闪烁 光致发光 材料科学 发射光谱 激发 发射强度 原子物理学 激子 猝灭(荧光) 吸收(声学) 光子 闪烁体 分析化学(期刊) 荧光粉 谱线 荧光 光学 物理 光电子学 化学 凝聚态物理 探测器 复合材料 量子力学 色谱法 天文
作者
Jacob Jasper van Blaaderen,Francesco Maddalena,Cuong Dang,Muhammad Danang Birowosuto,Pieter Dorenbos
出处
期刊:Journal of Materials Chemistry C [Royal Society of Chemistry]
卷期号:10 (32): 11598-11606
标识
DOI:10.1039/d2tc01483a
摘要

In this work the scintillation properties of PEA2PbBr4 are studied as function of temperature, accessing the potential use of these materials for low temperature applications. The scintillation properties and mechanism have been studied using a combination of temperature dependent photoluminescence emission and excitation, X-ray excited emission and decay measurements. At room temperature the X-ray excited emission is dominated by the 442 nm emission with a lifetime of 35.2 ns. Under UV-Vis photon excitation an additional emission peak is observed at 412 nm. At 10 K, both X-ray and UV-Vis photon excited emission spectra show a narrow emission peak at 412 nm and a broad emission band centred around 525 nm with a lifetime of 1.53 ns (24%) and 154 ns (76%) respectively. The exact nature of the observed emission peaks is not known. For this reason two potential mechanisms explaining the difference between UV-Vis photon and X-ray excitation and their temperature dependent emissions are explored. The total spectral intensity decreases to 72% of the intensity at room temperature at 10 K. It is suggested that the observed negative thermal quenching behaviour results from a combination of more self absorption and a higher degree of self trapped exciton formation under X-ray excitation. Based on the observed fast decay component at 10 K and light yield of 9400 photons per MeV at room temperature, showing only a 28% decrease at 10 K, could make this material potentially interesting for low temperature and fast timing applications.

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