Journal of Synthetic Crystals, Volume. 54, Issue 7, 1272(2025)
High-Efficiency X-Ray Detection of Layered Perovskite Single Crystals Based on Ruddlesden-Popper (RP)-Type CHA2PbBr4
[1] WEI H T, FANG Y J, MULLIGAN P et al. Sensitive X-ray detectors made of methylammonium lead tribromide perovskite single crystals. Nature Photonics, 10, 333-339(2016).
[2] KASAP S, FREY J B, BELEV G et al. Amorphous and polycrystalline photoconductors for direct conversion flat panel X-ray image sensors. Sensors, 11, 5112-5157(2011).
[3] YANG B, PAN W C, WU H D et al. Heteroepitaxial passivation of Cs2AgBiBr6 wafers with suppressed ionic migration for X-ray imaging. Nature Communications, 10, 1989(2019).
[4] HUANG Y M, QIAO L, JIANG Y Z et al. A-site cation engineering for highly efficient MAPbI3 single-crystal X-ray detector. Angewandte Chemie International Edition, 58, 17834-17842(2019).
[5] WEI H T, HUANG J S. Halide lead perovskites for ionizing radiation detection. Nature Communications, 10, 1066(2019).
[6] SHRESTHA S, FISCHER R, MATT G J et al. High-performance direct conversion X-ray detectors based on sintered hybrid lead triiodide perovskite wafers. Nature Photonics, 11, 436-440(2017).
[7] YAO M N, JIANG J Z, XIN D Y et al. High-temperature stable FAPbBr3 single crystals for sensitive X-ray and visible light detection toward space. Nano Letters, 21, 3947-3955(2021).
[8] MELONI S, MOEHL T, TRESS W et al. Ionic polarization-induced current-voltage hysteresis in CH3NH3PbX3 perovskite solar cells. Nature Communications, 7, 10334(2016).
[9] LIN Y, BAI Y, FANG YET al. Suppressed ion migration in low-dimensional perovskites. ACS Energy Letters, 2, 1571-1572(2017).
[10] GAO L, YOU J, LIU S F. Superior photovoltaics/optoelectronics of two-dimensional halide perovskites. Journal of Energy Chemistry, 57, 69-82(2021).
[11] MAO L L, WU Y L, STOUMPOS C C et al. Tunable white-light emission in single-cation-templated three-layered 2D perovskites (CH3CH2NH3)4Pb3Br10-x Cl x. Journal of the American Chemical Society, 139, 11956-11963(2017).
[12] XIAO B, SUN Q, WANG F et al. Towards superior X-ray detection performance of two-dimensional halide perovskite crystals by adjusting the anisotropic transport behavior. Journal of Materials Chemistry A, 9, 13209-13219(2021).
[13] WANG Z, SHI Z J, LI T T et al. Stability of perovskite solar cells: a prospective on the substitution of the A cation and X anion. Angewandte Chemie (International Edition), 56, 1190-1212(2017).
[14] ZHUANG J, WANG J Z, YAN F. Review on chemical stability of lead halide perovskite solar cells. Nano-Micro Letters, 15, 84(2023).
[15] SUN S Q, LU M, GAO X P et al. 0D perovskites: unique properties, synthesis, and their applications. Advanced Science, 8(2021).
[16] ZHANG M, XIN D Y, DONG S Y et al. Methylamine-assisted preparation of ruddlesden-popper perovskites for stable detection and imaging of X-rays. Advanced Optical Materials, 10, 2201548(2022).
[17] XIN D, DONG S, ZHANG M et al. Nucleation engineering in sprayed MA3Bi2I9 films for direct-conversion X-ray detectors. The Journal of Physical Chemistry Letters, 13, 371-377(2022).
[18] LIU Y C, XU Z, YANG Z et al. Inch-size 0D-structured lead-free perovskite single crystals for highly sensitive stable X-ray imaging. Matter, 3, 180-196(2020).
[19] LI W, XIN D Y, TIE S J et al. Zero-dimensional lead-free FA3Bi2I9 single crystals for high-performance X-ray detection. The Journal of Physical Chemistry Letters, 12, 1778-1785(2021).
[20] DONG S Y, TIE S J, YUAN R H et al. Research progress of low-dimensional halide perovskite direct X-ray detectors. Journal of Inorganic Materials, 38, 1017-1030(2023).
[21] ZHENG G Y, WU H D, DONG Z W et al. Direct X-ray detectors made of zero-dimensional hybrid metal halide perovskite single crystals. Journal of Materials Chemistry C, 12, 6288-6296(2024).
[22] ZHENG Y T, NIU T T, RAN X Q et al. Unique characteristics of 2D Ruddlesden-Popper (2DRP) perovskite for future photovoltaic application. Journal of Materials Chemistry A, 7, 13860-13872(2019).
[23] WANG N N, CHENG L, GE R et al. Perovskite light-emitting diodes based on solution-processed self-organized multiple quantum wells. Nature Photonics, 10, 699-704(2016).
[24] CHENG L, JIANG T, CAO Y et al. Multiple-quantum-well perovskites for high-performance light-emitting diodes. Advanced Materials, 32(2020).
[25] MITZI D B, DIMITRAKOPOULOS C D, KOSBAR L L. Structurally tailored organic-inorganic perovskites: optical properties and solution-processed channel materials for thin-film transistors. Chemistry of Materials, 13, 3728-3740(2001).
[26] DU K Z, TU Q, ZHANG X et al. Two-dimensional lead(Ⅱ) halide-based hybrid perovskites templated by acene alkylamines: crystal structures, optical properties, and piezoelectricity. Inorganic Chemistry, 56, 9291-9302(2017).
[27] KATAN C, MERCIER N, EVEN J. Quantum and dielectric confinement effects in lower-dimensional hybrid perovskite semiconductors. Chemical Reviews, 119, 3140-3192(2019).
[28] MAO L L, WU Y L, STOUMPOS C C et al. White-light emission and structural distortion in new corrugated two-dimensional lead bromide perovskites. Journal of the American Chemical Society, 139, 5210-5215(2017).
[29] FU P, QUINTERO M A, VASILEIADOU E S et al. Chemical behavior and local structure of the ruddlesden-popper and dion-jacobson alloyed Pb/Sn bromide 2D perovskites. Journal of the American Chemical Society, 145, 15997-16014(2023).
Get Citation
Copy Citation Text
Luying ZHENG, Fang WANG, Xieming XU, Shuaihua WANG, Shaofan WU. High-Efficiency X-Ray Detection of Layered Perovskite Single Crystals Based on Ruddlesden-Popper (RP)-Type CHA2PbBr4[J]. Journal of Synthetic Crystals, 2025, 54(7): 1272
Category:
Received: Apr. 15, 2025
Accepted: --
Published Online: Aug. 28, 2025
The Author Email: Shuaihua WANG (shwang@fjirsm.ac.cn)