个人信息:Personal Information
讲师 研究生导师
性别:男
毕业院校:暨南大学
学历:博士研究生毕业
学位:工学博士学位
在职信息:在岗
所在单位:广州研究院
入职时间:2022-07-11
学科:光学工程
办公地点:广州市黄埔区中新知识城知明路83号beoplay体育提现广州研究院
电子邮箱:
研究领域
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论文发表:
[1]. Y Liu#, Z Ji#, G Cen, H Sun, H Wang, C Zhao, ZL Wang*, W Mai*, Perovskite-based color camera inspired by human visual cells. Light: Science & Applications,2023, https://doi.org/10.1038/s41377-023-01072-y.
[2]. Z Ji#, Y Liu#, C Zhao, ZL Wang*, W Mai*, Perovskite wide-angle field-of-view camera, Adv. Mater., 2022, 34 (41), 2206957.
[3]. Y Liu#, C Liu#, K Shen, P Sun, W Li, C Zhao, Z Ji*, Y Mai*, W Mai*, Underwater multispectral computational imaging based on a broadband water-resistant Sb2Se3 heterojunction photodetector. ACS Nano 16 (4), 5820-5829.
[4]. Z Ji#, Y Liu#, W Li, C Zhao*, W Mai*, Reducing current fluctuation of Cs3Bi2Br9 perovskite photodetectors for diffuse reflection imaging with wide dynamic range. Sci. Bull., 2020, 65(16): 1371-1379.
[5]. Z Ji#, Y Liu#, M Yao, Z Zhang, J Zhong*, W Mai*, Achieving 256×256-Pixel color images by perovskite-based photodetectors coupled with algorithms. Adv. Funct. Mater. 2021, 31(37): 2104320.
[6]. Y. Liu, Z. Ji, Single-pixel color imaging based on a high-performance MAPbI3 perovskite photodetector, Applied Physics Letters, 2023, doi:10.1063/5.0131826.
[7]. Z Ji, Y Liu*, X. Chen*, Mosaic-free compound eye camera based on multidirectional photodetectors and single-pixel imaging. Optics Letters,2022, 47 (24), 6349-6352.
[8]. J He, Y Liu*, Z Li, Z Ji, G Yan, C Zhao*, W Mai, Achieving dual-color imaging by dual-band perovskite photodetectors coupled with algorithms. J. Colloid Inter. Sci. 2022, 625, 297-304
[9]. Y Liu#, Y Gao, J Zhi, R Huang, W Li, X Huang, G Yan, Z Ji*, W Mai*, All-inorganic lead-free NiOx/Cs3Bi2Br9 perovskite heterojunction photodetectors for ultraviolet multispectral imaging, Nano Research, 2022, 15(2): 1094-1101.
[10]. Y Liu#, Z Ji*, Y Li, H Fan, W Mai*, Spectrum-shaped Si-perovskite hybrid photodetectors for hyperspectral bioimaging. Photonics Res., 2021, 9(9):1734-1744.
[11]. Q Wu#, Y Liu#, X Huang, X Zheng, J He, Z Ji*, W Mai*, Self-Powered and broadband Germanium/PEDOT: PSS heterojunction photodetectors for near-infrared biomedical imaging applications. Sci. China Technol. Sc, 2021, 64(11): 2523-2531.
[12]. Z Ji*, Y Liu#, W Mai*, Enhancing the photodetection performance of MAPbI3 perovskite photodetectors by a dual functional interfacial layer for color imaging. Opt. Lett., 2021, 46(1): 150-153.
[13]. W Li#, Y Liu#, Y Gao, Z Ji, Y Fu, C Zhao*, W Mai*, Tunneling-assisted highly sensitive and stable lead-free Cs3Bi2I9 perovskite photodetectors for diffuse reflection imaging. J. Mater. Chem. C, 2021, 9(3): 1008-1013.
[14]. Y Liu#, J Zhu, L Cai, Z Yao, C Duan, Z Zhao*, C Zhao*, W Mai, Solution-Processed High-Quality Cu2O Thin Films as Hole Transport Layers for Pushing the Conversion Efficiency Limit of Cu2O/Si Heterojunction Solar Cells. Solar RRL, 2020, 4(1): 1900339.
[15]. Y Liu#, J Zhu#, D Xie, Y Gao, Y Yan, W Li, Z Ji, C Zhao*, W Mai*, Reducing the dark current of cuprous oxide/Au Schottky photodetector for high signal-to-noise ratio imaging. J. Phys. D-Appl. Phys., 2020, 53(22): 224003.
[16]. P Sun#, Y Liu#, M Qiu#, Y Tong*, W Mai*, In situ monitoring small energy storage change of electrochromic supercapacitors via perovskite photodetectors. Small Methods, 2020, 4(2): 1900731.
[17]. Y Liu#, J Zhu#, G Cen, J Zheng, D Xie, Z Zhao*, C Zhao*, W Mai,Valence-State Controllable Fabrication of Cu2-xO/Si Type-II Heterojunction for High-Performance Photodetectors. ACS Appl. Mater. Interfaces, 2019, 11(46):43376-43382.
[18]. Y. Liu#, G. Cen, G. Wang, J. Huang, S. Zhou, J. Zheng, Y. Fu, C. Zhao*, W. Mai*, High performance MoO3−x/Si heterojunction photodetectors with nanoporous pyramid Si arrays for visible light communication application. J. Mater. Chem. C, 2019, 7(4), 917-925.
[19]. G Cen#, Y Liu#, C Zhao*, G Wang, Y Fu, G Yan, Y Yuan, C Su, Z Zhao, W Mai*, Atomic-Layer Deposition-Assisted Double-Side Interfacial Engineering for High-Performance Flexible and Stable CsPbBr3 Perovskite Photodetectors toward Visible Light Communication Applications. Small, 2019, 15(36): 1902135.