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2.C. Chen, M. Xu*, “Geometric-phase versus gradient-index: a showdown for ultimate liquid crystal lenses,” Light: Advanced Manufacturing, 6: 85, 2025.
3.(Supplementary Cover) M. Xu, J. Li, X. Chang, L. Fang, H. Lu, Z. Wang*, “Low-voltage tunable polyvinyl chloride/ionic liquid gel-based lenticular microlens arrays for 2D/3D switchable displays,” ACS Applied Materials & Interfaces, 17(32): 45271-46462, 2025.
4.Z. Bian, Z. Wang, H. Lu*, M. Xu*, “Scattering-free and fast response polymer brush-stabilized liquid crystals beam steering using surface-initiated polymerization technique,” ACS Applied Materials & Interfaces, 16(47): 65529-65539, 2024.
5.M. Xu*, J. Li, X. Chang, C. Chen, H. Lu, Z. Wang*, “Self-assembled microlens array with controllable curvatures for integral imaging 3D display,” Optics and Lasers in Engineering, 180, 108322, 2024.
6.M. Xu, Y. Xue, J. Li, L. Zhang, H. Lu, and Z. Wang*, “Large-area and rapid fabrication of a microlens array on a flexible substrate for an integral imaging 3D display,” ACS Applied Materials & Interfaces, 15(7): 10219-10227, 2023.
7.(Spotlight on Optics) M. Xu*, Y. Liu, Y. Yuan, H. Lu, L. Qiu, “Variable-focus liquid lens based on electrically responsive fluid,” Optics Letters, 47(3), 509, 2022.
8.Y. Xue, S. Li, M. Xu*, Z. Li, H. Lu, “Self-assembled photocurable polymer biconvex microlens array based on double-faced discontinuous hydrophobic surface,” Optics and Laser Technology, 143: 107329, 2021.
9.P. Xu, M. Xu*, H. Lu, L. Qiu, “Polyvinyl chloride gels microlens array with a well-controlled curvature obtained by solvent evaporation under DC electric fields,” Optics Express 28(20): 29285-29295, 2020.
10.M. Xu*, Z. Zhou, Z. Wang, H. Lu, “Self-Assembled Microlens Array with Controllable Focal Length Formed on a Selective Wetting Surface,” ACS Applied Materials & Interfaces, 12: 7826–7832, 2020.