• Infrared and Laser Engineering
  • Vol. 50, Issue 4, 20200447 (2021)
Yu Fan1, Qianqian Yuan2, Haitao Jiang2、3, and Shibin Liu3
Author Affiliations
  • 1School of Network Engineering, ZhouKou Normal University, Zhoukou 466001, China
  • 2Jiaozuo Teacher’s College, Jiaozuo 454001, China
  • 3School of Electronics and Information, Northwestern Polytechnical University, Xi’an 710129, China
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    DOI: 10.3788/IRLA20200447 Cite this Article
    Yu Fan, Qianqian Yuan, Haitao Jiang, Shibin Liu. Graphene quantum dots/ZnO nanowires composites for efficient ultraviolet sensing[J]. Infrared and Laser Engineering, 2021, 50(4): 20200447 Copy Citation Text show less
    References

    [1] N Nasiri, R Bo, T F Hung, et al. Tunable band-selective UV-photodetectors by 3D self-assembly of heterogeneous nanoparticle networks. Advanced Functional Materials, 26, 7359-7366(2016).

    [2] H Chen, K Liu, L Hu, et al. New concept ultraviolet photodetectors. Materials Today, 18, 493-502(2015).

    [3] Haitao Jiang, Shibin Liu, Peipei He, et al. The laterial growth of ZnO nanowires network based on the micro-electrode. Rare Metal Materials and Engineering, 46, 3213-3216(2017).

    [4] L Peng, L Hu, X Fang. Low-dimensional nanostructure ultravio-let photodetectors. Advanced Materials, 25, 5321-5328(2013).

    [5] H Jiang, S Liu, Q Yuan. Synergistic effect of hybrid nanodia-mond/ZnO nanowires for improved ultraviolet photore-sponse. Infrared and Laser Engineering, 48, 0120004(2019).

    [6] X Li, C Gao, H Duan, et al. High‐performance photoelectro-chemical-type self-powered UV photodetector using epitaxial TiO2/SnO2 branched heterojunction nanostructure. Small, 9, 2005-2011(2013).

    [7] Y Xie, L Wei, G Wei, et al. A self-powered UV photodetector based on TiO2 nanorod arrays. Nanoscale Research Letters, 8, 188(2013).

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    [9] H Liu, Z Zhang, L Hu, et al. New UV‐a photodetector based on individual potassium niobate nanowires with high perfor-mance. Advanced Optical Materials, 2, 771-778(2014).

    [10] A B Djurišić, A M C Ng, X Y Chen. ZnO nanostructures for optoelectronics: material properties and device applications. Progress in Quantum Electronics, 34, 191-259(2010).

    [11] Z Wang, R Yu, X Wang, et al. Ultrafast response p-Si/n-ZnO heterojunction ultraviolet detector based on pyro-phototronic effect. Advanced Materials, 28, 6880-6886(2016).

    [12] W Dai, X Pan, S Chen, et al. Honeycomb-like NiO/ZnO hetero-structured nanorods: photochemical synthesis, characterization, and enhanced UV detection performance. Journal of Materials Chemistry C, 2, 4606-4614(2014).

    [13] T P Chen, F Y Hung, S P Chang, et al. Optoelectronic properties of thermally evaporated ZnO films with nanowalls on glass substrates. Applied Physics Express, 6, 045201(2013).

    [14] Q Xu, Q Cheng, J Zhong, et al. A metal-semiconductor-metal detector based on ZnO nanowires grown on a graphene lay-er. Nanotechnology, 25, 055501(2014).

    [15] C Soci, A Zhang, B Xiang, et al. ZnO nanowire UV photodetectors with high internal gain. Nano Letters, 7, 1003(2007).

    [16] Z Wang, X Zhan, Y Wang, et al. A flexible UV nanosensor based on reduced graphene oxide decorated ZnO nanostructures. Na-noscale, 4, 2678-2684(2012).

    [17] D Ghosh, S Kapri, S Bhattacharyya. Effectively exerting the reinforcement of dopamine reduced graphene oxide on epoxy-based composites via strengthened interfacial bond-ing. ACS Applied Materials & Interfaces, acsami.6b13037(2016).

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    [1] Chunyang Liu, Yujie Sheng, Jinyang Tong, Xingqiao Lu, Changming Yu, Yining Mu, Xuewen Wang. Low-dimensional flexible light-emitting device based on quantum dots & nanowire composite[J]. Infrared and Laser Engineering, 2023, 52(10): 20230433

    Yu Fan, Qianqian Yuan, Haitao Jiang, Shibin Liu. Graphene quantum dots/ZnO nanowires composites for efficient ultraviolet sensing[J]. Infrared and Laser Engineering, 2021, 50(4): 20200447
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