Journal of Synthetic Crystals, Volume. 54, Issue 7, 1289(2025)
Growth and High Resolution X-Ray Imaging of Inch-Size (C24H20P)2MnBr4 Single Crystalline Film
[1] HAN K, SAKHATSKYI K, JIN J C et al. Seed-crystal-induced cold sintering toward metal halide transparent ceramic scintillators. Advanced Materials, 34, 2110420(2022).
[2] MIAH M H, KHANDAKER M U, AMINUL ISLAM M et al. Perovskite materials in X-ray detection and imaging: recent progress, challenges, and future prospects. RSC Adv, 14, 6656-6698(2024).
[3] DONG S Y, FAN Z H, WEI W et al. Bottom-up construction of low-dimensional perovskite thick films for high-performance X-ray detection and imaging. Light, Science & Applications, 13, 174(2024).
[4] LI H, ZHANG Y, ZHOU M et al. A solar-blind perovskite scintillator realizing portable X-ray imaging. ACS Energy Letters, 7, 2876-2883(2022).
[5] PAN W T, HE Y H, LI W J et al. Cation-π interactions enabled water-stable perovskite X-ray flat mini-panel imager. Nature Communications, 15, 257(2024).
[6] SHEN J H, JIA R, HU Y et al. Cold-sintered all-inorganic perovskite bulk composite scintillators for efficient X-ray imaging. ACS Applied Materials & Interfaces, 16, 24703-24711(2024).
[7] WANG C, YAN Z G, WANG Y et al. All-inorganic ruddlesden-popper perovskite Cs2CdCl4∶Mn for low-dose and flexible X-ray imaging. ACS Materials Letters, 6, 1429-1438(2024).
[8] ZHANG Z Z, WEI J H, LUO J B et al. Large-area laminar TEA2MnI4 single-crystal scintillator for X-ray imaging with impressive high resolution. ACS Applied Materials & Interfaces, 14, 47913-47921(2022).
[9] CHEN J C, JIANG G C, HAMANN E et al. Organosilicon-based ligand design for high-performance perovskite nanocrystal films for color conversion and X-ray imaging. ACS Nano, 18, 10054-10062(2024).
[10] LU J, JIANG X M, GAO J et al. Probing the excited electronic configuration and associative excitons in pyrene-based X-ray scintillating MOF excimer: bridging the gap between theory and experiments. Advanced Optical Materials, 12, 2302376(2024).
[11] CHEN W Q, ZHOU M, LIU Y et al. All-inorganic perovskite polymer-ceramics for flexible and refreshable X-ray imaging. Advanced Functional Materials, 32, 2107424(2022).
[12] ZHOU M, JIANG H L, HOU T K et al. Inch-size and thickness-adjustable hybrid manganese halide single-crystalline films for high resolution X-ray imaging. Chemical Engineering Journal, 490, 151823(2024).
[13] YANG F, WU Z N, YANG M T et al. Stable luminescent organic manganese halide used for high-resolution X-ray imaging. ACS Photonics, 11, 3012-3018(2024).
[14] CHEN X Y, LI M, GE L et al. Ultralong red room-temperature phosphorescence of 2D organic-inorganic metal halide perovskites for afterglow red LEDs and X-ray scintillation applications. Inorganic Chemistry, 62, 16538-16546(2023).
[15] SUN Q S, WANG H Y, LI J et al. Nano organic co-crystal scintillator for X-ray imaging. Small Structures, 4, 2200275(2023).
[16] LI Y, CHEN L, GAO R L et al. Nanosecond and highly sensitive scintillator based on all-inorganic perovskite single crystals. ACS Applied Materials & Interfaces, 14, 1489-1495(2022).
[17] WANG H, WANG J X, SONG X et al. Copper organometallic iodide arrays for efficient X-ray imaging scintillators. ACS Central Science, 9, 668-674(2023).
[18] GU R R, HAN K, JIN J C et al. Surfactant-assisted synthesis of hybrid copper(I) halide nanocrystals for X-ray scintillation imaging. Chemistry of Materials, 36, 2963-2970(2024).
[19] LI J Y, HU Q S, XIAO J W et al. High-stability double perovskite scintillator for flexible X-ray imaging. Journal of Colloid and Interface Science, 671, 725-731(2024).
[20] LI R H, SANG T T, CAO Q et al. The synergy of inorganic cluster cage and organic ligands in lanthanide-titanium-oxo clusters scintillators for high performance X-ray imaging. Science China Materials, 67, 2575-2582(2024).
[21] ZHANG F, ZHOU Y C, CHEN Z P et al. Thermally activated delayed fluorescence zirconium-based perovskites for large-area and ultraflexible X-ray scintillator screens. Advanced Materials, 34, 2204801(2022).
[22] WU T, SHI Y, WU H et al. Potassium-regulated lead-free cesium copper iodide Cs3Cu2I5 perovskites with enhanced scintillation properties and their application in high-resolution X-ray imaging. Materials Chemistry C, 12, 1002-1011(2024).
[23] XU L J, SUN C Z, XIAO H et al. Green-light-emitting diodes based on tetrabromide manganese(Ⅱ) complex through solution process. Advanced Materials, 29, 1605739(2017).
[24] LIU Y Y, XIE Z, ZHENG W et al. High-efficiency narrow-band blue emission from lead-doped Cs2ZnBr4 nanocrystals. Chemical Engineering Journal, 460, 141683(2023).
[25] GONG Z L, ZHENG W, HUANG P et al. Highly efficient Sb3+ emitters in 0D cesium indium chloride nanocrystals with switchable photoluminescence through water-triggered structural transformation. Nano Today, 44, 101460(2022).
[26] CHENG X W, XIE Z, ZHENG W et al. Boosting the self-trapped exciton emission in alloyed Cs2(Ag/Na)InCl6 double perovskite via Cu+ doping. Advanced Science, 9, 2103724(2022).
Get Citation
Copy Citation Text
Fan YANG, Siyuan ZHANG, Wupei DONG, Xizheng WANG, Ming ZHOU, Dianxing JU. Growth and High Resolution X-Ray Imaging of Inch-Size (C24H20P)2MnBr4 Single Crystalline Film[J]. Journal of Synthetic Crystals, 2025, 54(7): 1289
Category:
Received: Apr. 13, 2025
Accepted: --
Published Online: Aug. 28, 2025
The Author Email: Dianxing JU (jdx@qust.edu.cn)