APPLIED LASER, Volume. 45, Issue 5, 113(2025)
Research on Femtosecond Laser Processing Technology for Anti-Reflective Microstructure on Titanium Alloy Surface
[1] [1] BODEN S A, BAGNALL D M. Tunable reflection minima of nanostructured antireflective surfaces[J]. Applied Physics Letters, 2008, 93(13): 133108.
[2] [2] HILLER J, MENDELSOHN J D, RUBNER M F. Reversibly erasable nanoporous anti-reflection coatings from polyelectrolyte multilayers[J].Nature Materials, 2002, 1: 59-63.
[3] [3] DENNLER G, FORBERICH K, SCHARBER M C, et al.Angle dependence of external and internal quantum efficiencies in bulk-heterojunction organic solar cells[J]. 2007, 102(5): 054516.
[4] [4] ZHU J, YU Z, BURKHARD G F, et al.Optical absorption enhancement in amorphous silicon nanowire and nanocone arrays[J]. Nano Letters, 2009, 9(1): 279-282.
[5] [5] HIRABAYASHI Y, KANEKO S, AKIYAMA K, et al. Antireflective subwavelength structures on 4H-SiC for UV photodetectors[J].ECS Transactions, 2010, 25(31): 69-73.
[6] [6] DAR M H, KULADEEP R, SAIKIRAN V, et al.Femtosecond laser nanostructuring of titanium metal towards fabrication of low-reflective surfaces over broad wavelength range[J]. Applied Surface Science, 2016, 371: 479-487.
[9] [9] ZHANG J G, ROSENKRANZ A, ZHANG J J, et al. Modified wettability of micro-structured steel surfaces fabricated by elliptical vibration diamond cutting[J]. International Journal of Precision Engineering and Manufacturing-Green Technology, 2022, 9(5): 1387-1397.
[11] [11] CHANG T H, CHANG Y C, CHEN C M, et al. Optimizing pyramidal silicon substrates through the electroless deposition of Ag nanoparticles for high-performance surface-enhanced Raman scattering[J]. Thin Solid Films, 2019, 676: 108-112.
[12] [12] ZENG Y, CHEN X F, YI Z, et al. Fabrication of p-n heterostructure ZnO/Si moth-eye structures: Antireflection, enhanced charge separation and photocatalytic properties[J]. Applied Surface Science, 2018, 441: 40-48.
[14] [14] IYENGAR VV, NAYAK B K, GUPTA M C. Ultralow reflectance metal surfaces by ultrafast laser texturing[J]. Applied Optics, 2010, 49(31): 5983-5988.
[15] [15] SMAUSZ T, CSIZMADIA T, TPAI C, et al. Study on the effect of ambient gas on nanostructure formation on metal surfaces during femtosecond laser ablation for fabrication of low-reflective surfaces[J]. Applied Surface Science, 2016, 389: 1113-1119.
[16] [16] DING K W, LI M, WANG C, et al. Sequential evolution of colored copper surface irradiated by defocused femtosecond laser[J]. Advanced Engineering Materials, 2020, 22(10): 1901310.
[19] [19] FAN P, BAI B, JIN G, et al. Patternable fabrication of hyper-hierarchical metal surface structures for ultrabroadband antireflection and self-cleaning[J]. Applied Surface Science, 2018, 457: 991-999.
[21] [21] DU M D, SUN Q Q, JIAO W, et al. Fabrication of antireflection micro/nanostructures on the surface of aluminum alloy by femtosecond laser[J]. Micromachines, 2021, 12(11): 1406.
[22] [22] LI X H, YUAN C H, YANG H D, et al. Morphology and composition on Al surface irradiated by femtosecond laser pulses[J]. Applied Surface Science, 2010, 256(13): 4344-4349.
[23] [23] YANG Y, YANG JJ, LIANG C Y, et al. Ultra-broadband enhanced absorption of metal surfaces structured by femtosecond laser pulses[J]. Optics Express, 2008, 16(15): 11259.
[24] [24] CESARIO J, QUIDANT R, BADENES G, et al. Electromagnetic coupling between a metal nanoparticle grating and a metallic surface[J]. Optics Letters, 2005, 30(24): 3404-3406.
[25] [25] GARCIA M A. Surface plasmons in metallic nanoparticles: Fundamentals and applications[J]. Journal of Physics D Applied Physics, 2011, 44(28): 283001.
[26] [26] FAN P X, ZHONG M L, BAI B F, et al. Tuning the optical reflection property of metal surfacesviamicro-nano particle structures fabricated by ultrafast laser[J]. Applied Surface Science, 2015, 359: 7-13.
[27] [27] FAN P, ZHONG M, LI L, et al. Rapid fabrication of surface micro/nano structures with enhanced broadband absorption on Cu by picosecond laser[J]. Optics Express, 2013, 21(10): 11628-11637.
[28] [28] RAUT H K, GANESH V A, NAIR A S, et al. Anti-reflective coatings: A critical, in-depth review[J]. Energy & Environmental Science, 2011, 4(10): 3779-3804.
Get Citation
Copy Citation Text
Zhou Sitao, Long Gui, Du Mengdan, Zhu Lei, Sun Quanquan, Shen Lifeng, Lan Jie, Xu Jianfeng, Xiao Junfeng. Research on Femtosecond Laser Processing Technology for Anti-Reflective Microstructure on Titanium Alloy Surface[J]. APPLIED LASER, 2025, 45(5): 113
Category:
Received: Sep. 20, 2023
Accepted: Sep. 8, 2025
Published Online: Sep. 8, 2025
The Author Email: Xiao Junfeng (xiaojf@hust.edu.cn)