材料科学
刚度(电磁)
分子
化学物理
钙钛矿(结构)
格子(音乐)
探测器
Atom(片上系统)
碘化物
限制
硫黄
光电子学
分子物理学
离解(化学)
重组
载流子
凝聚态物理
结构刚度
分子间力
有机半导体
杂质
光化学
选择性
晶格常数
作者
Jinmei Song,Zichang Wang,J.H. Han,Zhenjun Chen,Weijun Li,Yuhong He,Mingbian Li,Chao Wang,Hu Huang,Haotong Wei
标识
DOI:10.1002/adom.202502183
摘要
Abstract 2D perovskite material shows excellent potential in X‐ray detection due to the advantages such as improved moisture stability, low dark current, and suppressed noise fluctuation. However, the soft lattice structure resulting from the flexible organic molecules significantly contributes to the enhanced electron‐phonon coupling and nonradiative recombination of carriers, thereby hindering the charge carrier transport and limiting the X‐ray detection performance of 2D perovskite. Herein, a sulfur atom‐introduced 2‐thiopheneethylamine lead iodide (TEA 2 PbI 4 ) perovskite single‐crystal is reported. The S atom‐induced π–π interactions facilitate a more tightly ordered arrangement of organic molecules within the perovskite, leading to reduced distortion of the inorganic octahedra, which enhances the lattice rigidity and suppresses non‐radiative recombination compared to other perovskites. Thus, the TEA 2 PbI 4 perovskite single‐crystal exhibits a high sensitivity of 2.45 × 10 4 µC·Gy air −1 ·cm −2 under 80 kV X‐ray irradiation. The X‐ray detection efficiency of TEA 2 PbI 4 can reach 85%, and the noise‐equivalent dose is as low as 82 pGy air , demonstrating its high signal/noise resolution capability.
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