• Photonics Research
  • Vol. 11, Issue 12, 2231 (2023)
Shun-Xin Li1、2, Jia-Cheng Feng1, Yang An1, and Hong Xia1、*
Author Affiliations
  • 1State Key Laboratory of Integrated Optoelectronics, College of Electronic Science and Engineering, Jilin University, Changchun 130012, China
  • 2College of Physics, Jilin University, Changchun 130012, China
  • show less
    DOI: 10.1364/PRJ.496838 Cite this Article Set citation alerts
    Shun-Xin Li, Jia-Cheng Feng, Yang An, Hong Xia. Flexible, self-powered, and polarization-sensitive photodetector based on perovskite lateral heterojunction microwire arrays[J]. Photonics Research, 2023, 11(12): 2231 Copy Citation Text show less
    References

    [1] B. Hwang, J. S. Lee. 2D perovskite-based self-aligned lateral heterostructure photodetectors utilizing vapor deposition. Adv. Opt. Mater., 7, 1801356(2019).

    [2] M. Wang, W. Tian, F. R. Cao, M. Wang, L. Li. Flexible and self-powered lateral photodetector based on inorganic perovskite CsPbI3-CsPbBr3 heterojunction nanowire array. Adv. Funct. Mater., 30, 1909771(2020).

    [3] B. H. Wang, J. F. Mu. High-speed Si-Ge avalanche photodiodes. PhotoniX, 3, 22(2022).

    [4] Y.-Q. Liu, Z.-D. Chen, D.-D. Han, J.-W. Mao, J.-N. Ma, Y.-L. Zhang, H.-B. Sun. Bioinspired soft robots based on the moisture-responsive graphene oxide. Adv. Sci., 8, 2002464(2021).

    [5] Y. S. Guan, J. Qiao, Y. Y. Liang, H. K. Bisoyi, C. Wang, W. Xu, D. B. Zhu, Q. Li. A high mobility air-stable n-type organic small molecule semiconductor with high UV-visible-to-NIR photoresponse. Light Sci. Appl., 11, 236(2022).

    [6] Z. Li, T. Yan, X. Fang. Low-dimensional wide-bandgap semiconductors for UV photodetectors. Nat. Rev. Mater., 8, 587-603(2023).

    [7] F. Cao, L. Meng, M. Wang, W. Tian, L. Li. Gradient energy band driven high-performance self-powered perovskite/CdS photodetector. Adv. Mater., 31, 1806725(2019).

    [8] F. Cao, W. Tian, M. Wang, H. Cao, L. Li. Semitransparent, flexible, and self-powered photodetectors based on ferroelectricity-assisted perovskite nanowire arrays. Adv. Funct. Mater., 29, 1901280(2019).

    [9] Y. Gong, X. Xing, Z. Lv, J. Chen, P. Xie, Y. Wang, S. Huang, Y. Zhou, S.-T. Han. Ultrasensitive flexible memory phototransistor with detectivity of 1.8 × 1013 Jones for artificial visual nociceptor. Adv. Intel. Syst., 4, 2100257(2022).

    [10] R. C. Lin, Y. M. Zhu, L. Chen, W. Zheng, M. X. Xu, J. L. Ruan, R. F. Li, T. T. Li, Z. G. Lin, L. Cheng, Y. Ding, F. Huang, X. P. Ouyang. Ultrafast (600  ps) alpha-ray scintillators. PhotoniX, 3, 9(2022).

    [11] N. Wang, W. Yan, Y. Qu, S. Ma, S. Z. Li, M. Qiu. Intelligent designs in nanophotonics: from optimization towards inverse creation. PhotoniX, 2, 22(2021).

    [12] W. Wang, J. C. Ho. Luminescent concentrators enable highly efficient and broadband photodetection. Light Sci. Appl., 11, 125(2022).

    [13] Z.-C. Ma, Y.-L. Zhang, B. Han, X.-Y. Hu, C.-H. Li, Q.-D. Chen, H.-B. Sun. Femtosecond laser programmed artificial musculoskeletal systems. Nat. Commun., 11, 4536(2020).

    [14] Y. Zhan, Y. Wang, Q. F. Cheng, C. Li, K. X. Li, H. Z. Li, J. S. Peng, B. Lu, Y. Wang, Y. L. Song, L. Jiang, M. Z. Li. A butterfly-inspired hierarchical light-trapping structure towards a high-performance polarization-sensitive perovskite photodetector. Angew. Chem. Int. Ed., 58, 16456-16462(2019).

    [15] S.-X. Li, Y. An, X.-C. Sun, H. Zhu, H. Xia, H.-B. Sun. Highly aligned organic microwire crystal arrays for high-performance polarization-sensitive photodetectors and image sensors. Sci. China Mater., 65, 3105-3114(2022).

    [16] C. Chen, Y. Yang, X. Zhou, W. Xu, Q. Cui, J. Lu, H. Jing, D. Tian, C. Xu, T. Zhai, H. Xu. Synthesis of large-area uniform MoS2-WS2 lateral heterojunction nanosheets for photodetectors. ACS Appl. Nano Mater., 4, 5522-5530(2021).

    [17] S.-X. Li, Y.-S. Xu, C.-L. Li, Q. Guo, G. Wang, H. Xia, H.-H. Fang, L. Shen, H.-B. Sun. Perovskite single-crystal microwire-array photodetectors with performance stability beyond 1  year. Adv. Mater., 32, 2001998(2020).

    [18] P. S. Wu, L. Ye, L. Tong, P. Wang, Y. Wang, H. L. Wang, H. N. Ge, Z. Wang, Y. Gu, K. Zhang, Y. Y. Yu, M. Peng, F. Wang, M. Huang, P. Zhou, W. D. Hu. Van der Waals two-color infrared photodetector. Light Sci. Appl., 11, 9(2022).

    [19] X. Zhang, L. Li, C. Ji, X. Liu, Q. Li, K. Zhang, Y. Peng, M. Hong, J. Luo. Rational design of high-quality 2D/3D perovskite heterostructure crystals for record-performance polarization-sensitive photodetection. Natl. Sci. Rev., 8, nwab044(2021).

    [20] Y. W. Guan, C. H. Zhang, Z. Liu, Y. M. Zhao, A. Ren, J. Liang, F. Q. Hu, Y. S. Zhao. Single-crystalline perovskite p-n junction nanowire arrays for ultrasensitive photodetection. Adv. Mater., 34, 2203201(2022).

    [21] R. J. Tian, X. T. Gan, C. Li, X. Q. Chen, S. Q. Hu, L. P. Gu, D. Van Thourhout, A. Castellanos-Gomez, Z. P. Sun, J. L. Zhao. Chip-integrated van der Waals PN heterojunction photodetector with low dark current and high responsivity. Light Sci. Appl., 11, 101(2022).

    [22] M. Wang, W. Tian, F. Cao, M. Wang, L. Li. Flexible and self-powered lateral photodetector based on inorganic perovskite CsPbI3-CsPbBr3 heterojunction nanowire array. Adv. Funct. Mater., 30, 1909771(2020).

    [23] Y. Cao, X. Sha, X. Bai, Y. Shao, Y. Gao, Y.-M. Wei, L. Meng, N. Zhou, J. Liu, B. Li, X.-F. Yu, J. Li. Ultralow light-power consuming photonic synapses based on ultrasensitive perovskite/indium-gallium-zinc-oxide heterojunction phototransistors. Adv. Electron. Mater., 8, 2100902(2021).

    [24] L. L. Gu, Z. Y. Fan. Perovskite/organic-semiconductor heterojunctions for ultrasensitive photodetection. Light Sci. Appl., 6, e17090(2017).

    [25] D. Hao, D. Liu, Y. Shen, Q. Shi, J. Huang. Air-stable self-powered photodetectors based on lead-free CsBi3I10/SnO2 heterojunction for weak light detection. Adv. Funct. Mater., 31, 2100773(2021).

    [26] E. Z. Shi, B. Yuan, S. B. Shiring, Y. Gao, , Y. F. Guo, C. Su, M. L. Lai, P. D. Yang, J. Kong, B. M. Savoie, Y. Yu, L. T. Dou. Two-dimensional halide perovskite lateral epitaxial heterostructures. Nature, 580, 614-620(2020).

    [27] S. C. Zhang, Z. Y. Lin, E. Z. Shi, B. P. Finkenauer, Y. Gao, A. J. Pistone, K. Ma, B. M. Savoie, L. T. Dou. Quantifying anionic diffusion in 2D halide perovskite lateral heterostructures. Adv. Mater., 33, 2105183(2021).

    [28] S. X. Li, H. Xia, L. Wang, X. C. Sun, Y. An, H. Zhu, B. F. Bai, H. B. Sun. Self-powered and flexible photodetector with high polarization sensitivity based on MAPbBr3-MAPbI3 microwire lateral heterojunction. Adv. Funct. Mater., 32, 2206999(2022).

    [29] S. X. Li, H. Xia, X. C. Sun, Y. An, H. Zhu, H. B. Sun. Curved photodetectors based on perovskite microwire arrays via in situ conformal nanoimprinting. Adv. Funct. Mater., 32, 2202277(2022).

    [30] Y. Yang, H. T. Dai, F. Yang, Y. T. Zhang, D. Luo, X. L. Zhang, K. Wang, X. W. Sun, J. Q. Yao. All-perovskite photodetector with fast response. Nanoscale Res. Lett., 14, 291(2019).

    [31] N. T. Shewmon, H. Yu, I. Constantinou, E. Klump, F. So. Formation of perovskite heterostructures by ion exchange. ACS Appl. Mater. Interfaces, 8, 33273-33279(2016).

    [32] Z. X. Lai, Y. Meng, Q. Zhu, F. Wang, X. M. Bu, F. Z. Li, W. Wang, C. T. Liu, F. Wang, J. C. Ho. High-performance flexible self-powered photodetectors utilizing spontaneous electron and hole separation in quasi-2D halide perovskites. Small, 17, 2100442(2021).

    [33] X. Y. Zhang, C. M. Ji, X. T. Liu, S. S. Wang, L. N. Li, Y. Peng, Y. P. Yao, M. C. Hong, J. H. Luo. Solution-grown large-sized single-crystalline 2D/3D perovskite heterostructure for self-powered photodetection. Adv. Opt. Mater., 8, 2000311(2020).

    [34] C. W. Jang, H. Kim, M. K. Nazeeruddin, D. H. Shin, S. H. Choi. Piezo-electric and -phototronic effects of perovskite 2D/3D heterostructures. Nano Energy, 84, 105899(2021).

    [35] Q. Song, Y. Wang, F. Vogelbacher, Y. Zhan, D. Zhu, Y. Lan, W. Fang, Z. Zhang, L. Jiang, Y. Song, M. Li. Moire perovskite photodetector toward high-sensitive digital polarization imaging. Adv. Energy Mater., 11, 2100742(2021).

    [36] J. Feng, X. Yan, Y. Liu, H. Gao, Y. Wu, B. Su, L. Jiang. Crystallographically aligned perovskite structures for high-performance polarization-sensitive photodetectors. Adv. Mater., 29, 1605993(2017).

    [37] L. Li, L. Jin, Y. Zhou, J. Li, J. Ma, S. Wang, W. Li, D. Li. Filterless polarization-sensitive 2D perovskite narrowband photodetectors. Adv. Opt. Mater., 7, 1900988(2019).

    [38] Y. Liu, Z. Wu, X. Liu, S. Han, Y. Li, T. Yang, Y. Ma, M. Hong, J. Luo, Z. Sun. Intrinsic strong linear dichroism of multilayered 2D hybrid perovskite crystals toward highly polarized-sensitive photodetection. Adv. Opt. Mater., 7, 1901049(2019).

    [39] M. Li, S. Han, B. Teng, Y. Li, Y. Liu, X. Liu, J. Luo, M. Hong, Z. Sun. Minute-scale rapid crystallization of a highly dichroic 2D hybrid perovskite crystal toward efficient polarization-sensitive photodetector. Adv. Opt. Mater., 8, 2000149(2020).

    [40] L. Gao, K. Zeng, J. Guo, C. Ge, J. Du, Y. Zhao, C. Chen, H. Deng, Y. He, H. Song, G. Niu, J. Tang. Passivated single-crystalline CH3NH3PbI3 nanowire photodetector with high detectivity and polarization sensitivity. Nano Lett., 16, 7446-7454(2016).

    [41] H. Ye, Y. Peng, X. Shang, L. Li, Y. Yao, X. Zhang, T. Zhu, X. Liu, X. Chen, J. Luo. Self-powered visible-infrared polarization photodetection driven by ferroelectric photovoltaic effect in a Dion–Jacobson hybrid perovskite. Adv. Funct. Mater, 32, 2200223(2022).

    [42] Y. Li, Z. Shi, L. Wang, Y. Chen, W. Liang, D. Wu, X. Li, Y. Zhang, C. Shan, X. Fang. Solution-processed one-dimensional CsCu2I3 nanowires for polarization-sensitive and flexible ultraviolet photodetectors. Mater. Horiz., 7, 1613-1622(2020).

    [43] W. Wu, Z. Xu, Y. Yao, Y. Liu, G. Long, L. Li, M. Hong, J. Luo. Realization of in-plane polarized light detection based on bulk photovoltaic effect in a polar van der Waals crystal. Small, 18, 2200011(2022).

    [44] Y. Peng, X. Liu, Z. Sun, C. Ji, L. Li, Z. Wu, S. Wang, Y. Yao, M. Hong, J. Luo. Exploiting the bulk photovoltaic effect in a 2D trilayered hybrid ferroelectric for highly sensitive polarized light detection. Angew. Chem. Int. Edit., 59, 3933-3937(2020).

    [45] S. X. Li, G. P. Zhang, H. Xia, Y. S. Xu, C. Lv, H. B. Sun. Template-confined growth of Ruddlesden-Popper perovskite micro-wire arrays for stable polarized photodetectors. Nanoscale, 11, 18272-18281(2019).

    [46] C. Zou, Q. Liu, K. Chen, F. Chen, Z. Zhao, Y. Cao, C. Deng, X. Wang, X. Li, S. Zhan, F. Gao, S. Li. A high-performance polarization-sensitive and stable self-powered UV photodetector based on a dendritic crystal lead-free metal-halide CsCu2I3/GaN heterostructure. Mater. Horiz., 9, 1479-1488(2022).

    [47] J. Wang, Y. Liu, S. Han, Y. Ma, Y. Li, Z. Xu, J. Luo, M. Hong, Z. Sun. Ultrasensitive polarized-light photodetectors based on 2D hybrid perovskite ferroelectric crystals with a low detection limit. Sci. Bull., 66, 158-163(2021).

    Shun-Xin Li, Jia-Cheng Feng, Yang An, Hong Xia. Flexible, self-powered, and polarization-sensitive photodetector based on perovskite lateral heterojunction microwire arrays[J]. Photonics Research, 2023, 11(12): 2231
    Download Citation