Journal of Inorganic Materials, Volume. 35, Issue 11, 1203(2020)
[1] KASAP S, FREY J B, BELEV G et al. Amorphous and polycrystalline photoconductors for direct conversion flat panel X-ray image sensors[J]. Sensors (Basel), 11, 5112-5157(2011).
[2] SAKDINAWAT A, ATTWOOD D. Nanoscale X-ray imaging[J]. Nature Photonics, 4, 840-848(2010).
[3] SZELES C. CdZnTe and CdTe materials for X-ray and gamma ray radiation detector applications[J]. Physica Status Solidi B-basic Research, 241, 783-790(2004).
[4] KASAP S O, KABIR M Z, ROWLANDS J A et al. Dependence of the detective quantum efficiency of photoconductive X-ray image detectors on charge transport parameters and exposure: application to α-Se[J]. Applied Physics Letters, 81, 3482-3484(2002).
[5] ZHANG P, YANG J, XWEI S H. Manipulation of cation combinations and configurations of halide double perovskites for solar cell absorbers[J]. Journal of Materials Chemistry A, 6, 1809-1815(2018).
[6] XIAOLING W, ZUYONG F, NAN W et al. Progress on novel perovskite solar cells[J]. Materials China, 35, 960-965(2016).
[7] CHENG Z, YLIN J. Layered organic-inorganic hybrid perovskites: structure, optical properties, film preparation, patterning and templating engineering[J]. CrystEngComm, 12, 2646-2662(2010).
[8] BHALLA A S, GUO R, YROY R. The perovskite structure: a review of its role in ceramic science and technology[J]. Materials Research Innovations, 4, 3-26(2000).
[9] ZHANG B, YAN J, WANG J et al. Effect of the modulating of organic content on optical properties of single-crystal perovskite[J]. Optical Materials, 62, 273-278(2016).
[12] YIN W J, YANG J H, KANG J et al. Halide perovskite materials for solar cells: a theoretical review[J]. J. Mater. Chem. A, 3, 8926-8942(2015).
[16] HE J L, VASENKO A S, LONG R et al. Halide composition controls electron-hole recombination in cesium-lead halide perovskite quantum dots: a time domain
[19] WEI H T, FANG Y J, MULLIGAN P et al. Sensitive X-ray detectors made of methylammonium lead tribromide perovskite single crystals[J]. Nature Photonics, 10, 333-339(2016).
[20] YAKUNIN S, DIRIN D N, SHYNKARENKO Y et al. Detection of gamma photons using solution-grown single crystals of hybrid lead halide perovskites[J]. Nature Photonics, 10, 585-589(2016).
[21] YAKUNIN S, SYTNYK M, KRIEGNER D et al. Detection of X-ray photons by solution-processed organic-inorganic perovskites[J]. Nature Photonics, 9, 444-449(2015).
[24] DENG Y H, PENG E, SHAO Y C et al. Scalable fabrication of efficient organolead trihalide perovskite solar cells with doctor- bladed active layers[J]. Energy & Environmental Science, 8, 1544-1550(2015).
[26] ZHUMEKENOV A A, SAIDAMINOV M I, HAQUE M A et al. Formamidinium lead halide perovskite crystals with unprecedented long carrier dynamics and diffusion length[J]. ACS Energy Letters, 1, 32-37(2016).
[28] MIYATA A, MITIOGLU A, PLOCHOCKA P et al. Direct measurement of the exciton binding energy and effective masses for charge carriers in organic-inorganic tri-halide perovskites[J]. Nature Physics, 11, 582-587(2015).
[30] PAN W C, WU H D, LUO J J et al. Cs2AgBiBr6 single-crystal X- ray detectors with a low detection limit[J]. Nature Photonics, 11, 726-732(2017).
[32] HEO J H, SHIN D H, PARK J K et al. High-performance next- generation perovskite nanocrystal scintillator for nondestructive X-ray imaging[J]. Advanced Materials, 30, e1801743(2018).
[34] WU Y T, HAN D, CHAKOUMAKOS B C et al. Zero-dimensional Cs4EuX6(X=Br, I) all-inorganic perovskite single crystals for gamma-ray spectroscopy[J]. Journal of Materials Chemistry C, 6, 6647-6655(2018).
[35] ZHOU H W, NIE Z H, YIN J et al. Antisolvent diffusion-induced growth, equilibrium behaviours in aqueous solution and optical properties of CH3NH3PbI3 single crystals for photovoltaic applications[J]. RSC Advances, 5, 85344-85349(2015).
[36] HUANG J S, SHAO Y, CDONG Q F. Organometal trihalide perovskite single crystals: a next wave of materials for 25% efficiency photovoltaics and applications beyond?[J]. Physical Chemistry Letters, 6, 3218-3227(2015).
[37] SU J, CHEN D, PLIN C T. Growth of large CH3NH3PbX3 (X=I, Br) single crystals in solution[J]. Journal of Crystal Growth, 422, 75-79(2015).
[39] EISEN Y, SHOR A, MARDOR I. CdTe and CdZnTe X-ray and
[40] DVORYANKIN V F, DVORYANKINA G G, KUDRYASHOV A A et al. X-ray sensitivity of Cd0.9Zn0.1Te detectors[J]. Technical Physics, 55, 306-308(2010).
[42] CLAIRAND I, BORDY J M, CARINOU E et al. Use of active personal dosemeters in interventional radiology and cardiology: tests in laboratory conditions and recommendations-oramed project[J]. Radiation Measurements, 46, 1252-1257(2011).
[43] CONINGS B, DRIJKONINGEN J, GAUQUELIN N et al. Intrinsic thermal instability of methylammonium lead trihalide perovskite[J]. Advanced Energy Materials, 5, 1500477(2015).
[44] YIN W J, CHEN H Y, SHI T T et al. Origin of high electronic quality in structurally disordered CH3NH3PbI3 and the passivation effect of Cl and O at grain boundaries[J]. Advanced Electronic Materials, 1, 1500044(2015).
[45] STOUMPOS C C, MALLIAKAS C D, PETERS J A et al. Crystal growth of the perovskite semiconductor CsPbBr3: a new material for high-energy radiation detection[J]. Crystal Growth & Design, 13, 2722-2727(2013).
[46] YUAN Y, BHUANG J S. Ion migration in organometal trihalide perovskite and its impact on photovoltaic efficiency and stability[J]. Accounts of Chemical Research, 49, 286-293(2016).
[47] LEE J W, KIM D H, KIM H S et al. Formamidinium and cesium hybridization for photo- and moisture-stable perovskite solar cell[J]. Advanced Energy Materials, 5, 1501310(2015).
[48] YI C Y, LUO J S, MELONI S et al. Entropic stabilization of mixed a-cation ABX3 metal halide perovskites for high performance perovskite solar cells[J]. Energy & Environmental Science, 9, 656-662(2016).
[49] CHEN C Y, LIN H Y, CHIANG K M et al. All-vacuum-deposited stoichiometrically balanced inorganic cesium lead halide perovskite solar cells with stabilized efficiency exceeding 11%[J]. Advanced Materials, 29, 1605290(2017).
[50] WU Y, HUANG Y, CAO F et al. Capping CsPbBr3 with ZnO to improve performance and stability of perovskite memristors[J]. Nano Research, 10, 1584-1594(2017).
[52] XUE J, GU Y, SHAN Q et al. Constructing mie-scattering porous interface-fused perovskite films to synergistically boost light harvesting and carrier transport[J]. Angewandte Chemie International Edition, 56, 5232-5236(2017).
[57] ZHANG L, YANG X, JIANG Q et al. Ultra-bright and highly efficient inorganic based perovskite light-emitting diodes[J]. Nature Communication, 8, 15640(2017).
[58] YANG B, ZHANG F, CHEN J et al. Ultrasensitive and fast all- inorganic perovskite-based photodetector
[60] ZHANG Z Q, FENG X, LU X et al. Polymer-passivated inorganic cesium lead mixed-halide perovskites for stable and efficient solar cells with high open-circuit voltage over 1.3 V[J]. Advanced Materials, 30, 1705393(2018).
[61] YANG T, ZHENG Y, DU Z et al. Superior photodetectors based on all-inorganic perovskite CsPbI3 nanorods with ultrafast re-sponse and high stability[J]. ACS Nano, 12, 1611-1617(2018).
[62] LOU-WEN Z, SHAO-LI S, LU-YING L et al. Application and development of cesium lead halide perovskite based planar heterojunction leds[J]. Journal of Inorganic Materials, 34, 37-48(2019).
[65] CHU L, AHMAD W, LIU W et al. Lead-free halide double perovskite materials: a new superstar toward green and stable optoelectronic applications[J]. Nano-Micro Letters., 11, 16(2019).
[67] SAPAROV B, SUN J P, MENG W W et al. Thin-film deposition and characterization of a Sn-deficient perovskite derivative Cs2SNi6[J]. Chemistry of Materials, 28, 2315-2322(2016).
[69] KALTZOGLOU A, ANTONIADOU M, KONTOS A G et al. Optical-vibrational properties of the Cs2SnX6(X=Cl, Br, I) defect perovskites and hole-transport efficiency in dye-sensitized solar cells[J]. Journal of Physical Chemistry C, 120, 11777-11785(2016).
[70] LEE B, KRENSELEWSKI A, BAIK S I et al. Solution processing of air-stable molecular semiconducting iodosalts, Cs2SnI6-
[71] JU M G, CHEN M, ZHOU Y Y et al. Earth-abundant nontoxic titanium (IV)-based vacancy-ordered double perovskite halides with tunable 1.0 to 1.8 eV bandgaps for photovoltaic applications[J]. ACS Energy Letters, 3, 297-304(2018).
[73] CLARK R J, HTRUMBLE W R. Resonance raman-spectra of some mixed-valence halogeno-compounds of antimony and lead[J]. Journal of The Chemical Society-Dalton Transactions, 12, 1145-1149(1976).
[74] MAUGHAN A E, GANOSE A M, CANDIA A M et al. Anharmonicity and octahedral tilting in hybrid vacancy-ordered double perovskites[J]. Chemistry of Materials, 30, 472-483(2018).
[75] MAUGHAN A E, GANOSE A M, ALMAKER M A et al. Tolerance factor and cooperative tilting effects in vacancy-ordered double perovskite halides[J]. Chemistry of Materials, 30, 3909-3919(2018).
[78] KALTZOGLOU A, ANTONIADOU M, PERGANTI D et al. Mixed-halide Cs2SnI3Br3 perovskite as low resistance hole-transporting material in dye-sensitized solar cells[J]. Electrochimica Acta, 184, 466-474(2015).
[79] ZHANG H N, GAO Z Y, LIANG X R. X-ray detector based on all-inorganic lead-free Cs2AgBiBr6 perovskite single crystal[J]. IEEE Transactions on Electron Devices, 66, 2224-2229(2019).
[80] DAY P. Spectra and constitution of antimony (III), antimony (V) hexahalide salts and related compounds[J]. Molecules into Materials, 2, 120-124(2007).
[81] WEI W, ZHANG Y, XU Q et al. Monolithic integration of hybrid perovskite single crystals with heterogenous substrate for highly sensitive X-ray imaging[J]. Nature Photonics, 11, 315-321(2017).
[86] NAZARENKO O, YAKUNIN S, MORAD V et al. Single crystals of caesium formamidinium lead halide perovskites: solution growth and gamma dosimetry[J]. NPG Asia Materials, 9, e373(2017).
[88] BIROWOSUTO M D, CORTECCHIA D, DROZDOWSKI W et al. X-ray scintillation in lead halide perovskite crystals[J]. Sci. Rep, 6, 37254(2016).
[89] SHAN X, WANG S, MENG G et al. Interface engineering of electron transport layer/light absorption layer of perovskite solar cells[J]. Progress in Chemistry, 31, 714-722(2019).
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Gang MENG, Yuqi YE, Liming FAN, Shimao WANG, Volodymyr GNATYUK, Xiaodong FANG.
Category: REVIEW
Received: Jul. 31, 2019
Accepted: --
Published Online: Mar. 10, 2021
The Author Email: Xiaodong FANG (xdfang@aiofm.ac.cn)