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由超分子锚定剂实现的灵敏且稳定的二维钙钛矿单晶X射线探测器。

Sensitive and Stable 2D Perovskite Single-Crystal X-ray Detectors Enabled by a Supramolecular Anchor.

作者信息

Li Huayang, Song Jinmei, Pan Wanting, Xu Daren, Zhu Wan-An, Wei Haotong, Yang Bai

机构信息

State Key Laboratory of Supramolecular Structure and Materials, College of Chemistry, Jilin University, Changchun, 130012, P. R. China.

Key Laboratory of Organ Regeneration and Transplantation of the Ministry of Education, The First Hospital of Jilin University, Changchun, 130061, P. R. China.

出版信息

Adv Mater. 2020 Oct;32(40):e2003790. doi: 10.1002/adma.202003790. Epub 2020 Sep 2.

Abstract

Perovskite X-ray detectors have been demonstrated to be sensitive to soft X-rays (<80 keV) for potential medical imaging applications. However, developing X-ray detectors that are stable and sensitive to hard X-rays (80 to 120 keV) for practical medical imaging is highly desired. Here, a sensitive 2D fluorophenethylammonium lead iodide ((F-PEA) PbI ) perovskite single-crystal hard-X-ray detector from low-cost solution processes is reported. Dipole interaction of organic ions promotes the ordering of benzene rings as well as the supramolecular electrostatic interaction between electron-deficient F atoms with neighbor benzene rings. Supramolecular interactions serve as a supramolecular anchor to stabilize and tune the electronic properties of single crystals. The 2D (F-PEA) PbI perovskite single crystal exhibits an intrinsic property with record bulk resistivity of 1.36 × 10 Ω cm, which brings a low device noise for hard X-ray detection. Meanwhile, the ion-migration phenomenon is effectively suppressed, even under the large applied bias of 200 V, by blocking the ion migration paths after anchoring. Consequently, the (F-PEA) PbI single crystal detector yields a sensitivity of 3402 μC Gy air cm to 120 keV hard X-rays with lowest detectable X-ray dose rate of 23 nGy s , outperforming the dominating CsI scintillator of commercial digital radiography systems by acquiring clear X-ray images under much lower dose rate. In addition, the detector shows high operation stability under extremely high-flux X-ray irradiation.

摘要

钙钛矿X射线探测器已被证明对软X射线(<80 keV)敏感,具有潜在的医学成像应用前景。然而,开发对硬X射线(80至120 keV)稳定且敏感的X射线探测器以用于实际医学成像非常必要。在此,报道了一种通过低成本溶液法制备的灵敏的二维氟苯乙铵碘化铅((F-PEA)PbI )钙钛矿单晶硬X射线探测器。有机离子的偶极相互作用促进苯环的有序排列以及缺电子F原子与相邻苯环之间的超分子静电相互作用。超分子相互作用作为超分子锚定物来稳定和调节单晶的电子性质。二维(F-PEA)PbI钙钛矿单晶表现出本征性质,其体电阻率达到创纪录的1.36×10Ω·cm,这为硬X射线检测带来了低器件噪声。同时,通过在锚定后阻断离子迁移路径,即使在200 V的大外加偏压下,离子迁移现象也能得到有效抑制。因此,(F-PEA)PbI单晶探测器对120 keV硬X射线的灵敏度为3402 μC·Gy air cm,最低可检测X射线剂量率为23 nGy s,在低得多的剂量率下获取清晰的X射线图像,性能优于商业数字射线照相系统中占主导地位的CsI闪烁体。此外,该探测器在极高通量X射线照射下显示出高运行稳定性。

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