Interface Energy‐Level Reorganization for Efficient Perovskite γ‐Ray Detectors

探测器 钙钛矿(结构) 光电子学 材料科学 泄漏(经济) 偶极子 光学 化学 物理 结晶学 宏观经济学 经济 有机化学
作者
Mingjian Yuan,Yanxing Feng,Quanlin Chen,Xinlong Yan,Xinliang Fu,Di Wang,Zijin Ding,Saisai Li,Cong Geng,Linyue Gao,Jia Zhang,Fan Yang,Saif M. H. Qaid,Shuyan Gao,Yuanzhi Jiang
出处
期刊:Angewandte Chemie [Wiley]
卷期号:63 (52): e202412685-e202412685 被引量:8
标识
DOI:10.1002/anie.202412685
摘要

Abstract Metal halide perovskites are promising candidates for gamma‐ray ( γ ‐ray) spectrum detectors. However, achieving high‐resolution energy spectra in single‐photon pulse‐height analysis mode remains challenging, due to the inevitable leakage currents degrade the recognizable fingerprint energies which is critical for resolving γ ‐ray spectroscopy. We demonstrate under high bias voltage, a deficient contact barrier can lead to excessive surface charge injection, thereby increasing leakage current from electrodes to perovskites. Hence, we conceive to employ surface ligand engineering on perovskite single crystals to manipulate energy levels to suppress leakage current. In particular, anchoring a strong dipole ligand onto the perovskite induced surface charge‐density displacement, leading to a downward band bending and heightened the corresponding contact barrier. Consequently, the strategy minimized the detectors’ leakage current by an order of magnitude, to as low as 44 nA cm −2 at −100 V. The resulting detectors show a significant improvement in energy resolution, 3.9 % for 22 Na 511 keV γ ‐rays has been achieved at room temperature. The resulting detector further resolves each fingerprint energy for 152 Eu γ ‐spectrum, representing one of the best γ ‐rays perovskite detectors reported to date. Moreover, the detectors exhibited stabilized energy resolution without any degradation under a continuous electric field (1,000 V cm −1 ) for over 300 minutes, representing the longest longevity reported to date.
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