• Journal of Semiconductors
  • Vol. 41, Issue 5, 050401 (2020)
Zhou Yang1 and Shengzhong Liu1、2
Author Affiliations
  • 1Shaanxi Normal University, Xi'an 710062, China
  • 2Dalian Institute of Chemical Physics, Chinese Academy of Sciences, Dalian 116023, China
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    DOI: 10.1088/1674-4926/41/5/050401 Cite this Article
    Zhou Yang, Shengzhong Liu. Perspective on the imaging device based on perovskite materials[J]. Journal of Semiconductors, 2020, 41(5): 050401 Copy Citation Text show less
    References

    [1] C Chen, g X Q Zhang, u G Wu et al. Visible-light ultrasensitive solution-prepared layered organic-inorganic hybrid perovskite field-effect transistor. Adv Optical Mater, 5, 1600539(2017).

    [2] L Dou, Y Yang, J You et al. Solution-processed hybrid perovskite photodetectors with high detectivity. Nat Commun, 5, 5404(2014).

    [3] W H Wang, Y R Ma, L M Qi. High-performance photodetectors based on organometal halide perovskite nanonets. Adv Func Mater, 27, 1603653(2017).

    [4] L Shen, g Y Fang, g D Wang et al. A self-powered, sub-nanosecond-response solution-processed hybrid perovskite photodetector for time-resolved photoluminescence-lifetime detection. Adv Mater, 28, 10794(2016).

    [5] Q Lin, n A Armin, s D M Lyons et al. Low noise, IR-blind organohalide perovskite photodiodes for visible light detection and imaging. Adv Mater, 27, 2060(2015).

    [6] Y Fang, g J Huang. Resolving weak light of sub-picowatt per square centimeter by hybrid perovskite photodetectors enabled by noise reduction. Adv Mater, 27, 2804(2015).

    [7] Q Lin, n A Armin, n P L Burn et al. Filterless narrowband visible photodetectors. Nat Photonics, 9, 687(2015).

    [8] Y J Fang, g Q F Dong, o Y C Shao et al. Highly narrowband perovskite single-crystal photodetectors enabled by surface-charge recombination. Nat Photonics, 9, 679(2015).

    [9] S Chen, g C Teng, g M Zhang et al. A flexible UV–Vis–NIR photodetector based on a perovskite/conjugated-polymer composite. Adv Mater, 28, 5969(2016).

    [10] X Zheng, o W Zhao, g P Wang et al. Ultrasensitive and stable X-ray detection using zero-dimensional lead-free perovskites. J Energy Chem, 49, 299(2020).

    [11] M Hu, a S Jia, u Y Liu et al. Large and dense organic–inorganic hybrid perovskite CH3NH3PbI3 wafer fabricated by one-step reactive direct wafer production with high X-ray sensitivity. ACS Appl Mater Interfaces, 12, 16592(2020).

    [12] W Pan, g B Yang, u G Niu et al. Hot-pressed CsPbBr3 quasi-monocrystalline film for sensitive direct X-ray detection. Adv Mater, 31, 1904405(2019).

    [13] Y Liu, g Y Zhang, o K Zhao et al. A 1300 mm2 ultrahigh-performance digital imaging assembly using high-quality perovskite single crystals. Adv Mater, 30, 1707314(2018).

    [14] Y Zhang, Y Liu, Z Xu et al. Nucleation-controlled growth ofsuperior lead-free perovskite Cs3Bi2I9 single-crystals for high performance X-ray detection. Nat Commun, 11, 2304(2020).

    [15] Y C Kim, m K H Kim, n D Y Son et al. Printable organometallic perovskite enables large-area, low-dose X-ray imaging. Nature, 550, 87(2017).

    Zhou Yang, Shengzhong Liu. Perspective on the imaging device based on perovskite materials[J]. Journal of Semiconductors, 2020, 41(5): 050401
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