Chinese Optics, Volume. 15, Issue 4, 668(2022)
Analysis of photoelectric characteristics of a light-damaged schottky perovskite detector
[1] [1] TIAN C C. CVD method synthesized allinganic perovskite its development of optoelectronic devices[D]. Beijing: University of Chinese Academy of Sciences, 2019. (in Chinese)
[2] QIN Y, LIN ZH H, CHANG J J, . Research progress of printed perovskite solar cells[J]. Chinese Optics, 12, 1015-1027(2019).
[3] LIU Y ZH, LI G H, CUI Y X, . Research progress in perovskite photodetectors[J]. Laser & Optoelectronics Progress, 56, 010001(2019).
[4] WANG L, DONG Y, GAO S, . Research progress of perovskite materials in the field of lasers[J]. Chinese Optics, 12, 993-1014(2019).
[5] LI J ZH, CAO H Q, ZHANG CH, . Vapor assisted doctor blading process to fabricate perovskite thin films[J]. Chinese Optics, 12, 1028-1039(2019).
[6] WANG Y P, SUN X, SHIVANNA R, et al. Photon transport in one-dimensional incommensurately epitaxial CsPbX3 arrays[J]. Nano Letters, 16, 7974-7981(2016).
[7] PARK K, LEE J W, KIM J D, et al. Light-matter interactions in cesium lead halide perovskite nanowire lasers[J]. The Journal of Physical Chemistry Letters, 7, 3703-3710(2016).
[8] ZHOU H, YUAN SH P, WANG X X, et al. Vapor growth and tunable lasing of band gap engineered cesium lead halide perovskite micro/nanorods with triangular cross section[J]. ACS Nano, 11, 1189-1195(2017).
[9] HUANG L, GAO Q G, SUN L D, et al. Composition-graded cesium lead halide perovskite nanowires with tunable dual-color lasing performance[J]. Advanced Materials, 30, 1800596(2018).
[10] ZHANG Q, SU R, LIU X F, et al. High-quality whispering-gallery-mode lasing from cesium lead halide perovskite nanoplatelets[J]. Advanced Functional Materials, 26, 6238-6245(2016).
[11] ZHAO L Y, GAO Y, SU M, et al. Vapor-phase incommensurate heteroepitaxy of oriented single-crystal CsPbBr3 on GaN: toward integrated optoelectronic applications[J]. ACS Nano, 13, 10085-10094(2019).
[12] [12] LI F T. Research on controllable preparation of lead halide perovskite it’s lasing property regulation[D]. Beijing: University of Science Technology Beijing, 2021. (in Chinese)
[13] ZHONG Y G, LIAO K, DU W N, et al. Large-scale thin CsPbBr3 single-crystal film grown on sapphire
[14] DONG Q F, FANG Y J, SHAO Y CH, et al. Electron-hole diffusion lengths >175 μm in solution-grown CH 3NH3PbI3 single crystals[J]. Science, 347, 967-970(2015).
[15] DONG Y H, GU Y, ZOU Y SH, et al. Improving all-inorganic perovskite photodetectors by preferred orientation and plasmonic effect[J]. Small, 12, 5622-5632(2016).
[16] SHAIKH P A, SHI D, RETAMAL J R D, et al. Schottky junctions on perovskite single crystals: light-modulated dielectric constant and self-biased photodetection[J]. Journal of Materials Chemistry C, 4, 8304-8312(2016).
[17] GUAN X W, HU W J, HAQUE A, et al. Light-responsive ion-redistribution-induced resistive switching in hybrid perovskite schottky junctions[J]. Advanced Functional Materials, 28, 1704665(2018).
[18] ZHENG CH B, SHAO J F, LI X L, . Femtosecond pulsed laser induced damage characteristics on Si-based multi-layer film[J]. Chinese Optics, 12, 371-381(2019).
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Jia-yi QU, Yun-peng WANG, Jun-jie SUN, Fei CHEN, Dong-xu ZHAO, Can-can TIAN. Analysis of photoelectric characteristics of a light-damaged schottky perovskite detector[J]. Chinese Optics, 2022, 15(4): 668
Category: Original Article
Received: Nov. 9, 2021
Accepted: Jan. 6, 2022
Published Online: Sep. 6, 2022
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