Preparation and Optical Properties of Sol-Gel SiO2 Antireflective Films

被引:1
|
作者
Shen Bin [1 ,2 ]
Zhang Xu [1 ]
Xiong Huai [1 ]
Li Haiyuan [1 ]
Xie Xinglong [1 ,2 ]
机构
[1] Chinese Acad Sci, Shanghai Inst Opt & Fine Mech, Key Lab High Power Laser & Phys, Shanghai 201800, Peoples R China
[2] Univ Chinese Acad Sci, Ctr Mat Sci & Optoelect Engn, Beijing 100049, Peoples R China
基金
中国国家自然科学基金;
关键词
Sol-Gel; antireflective film; SiO2; mechanical strength;
D O I
10.15541/jim20230567
中图分类号
TQ174 [陶瓷工业]; TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
Base-catalyzed sol-gel porous SiO2 antireflective film, an important part of high power laser (such as "Shenguang II" high power laser) facilities, has excellent optical properties and laser damage resistance. However, its low binding strength with optical components can lead to the film frustrated with contact destruction. Based on this antireflective film, a double-layer SiO2 antireflective film (SiO2-MTES) was prepared with improved mechanical strength by coating a thin dense SiO2 film on its surface using dip coating method. Then the SiO2-MTES was compared with a commonly used single-layer ammonia cured SiO2 antireflective film (SiO2-HMDS). Results indicate that the peak transmittance of the fused quartz substrate coated with SiO2-MTES reaches greater than 99.6% at about 800 nm and the zero probability laser damage threshold is measured to be 51.9 J/cm(2) (1064 nm, 9.1 ns) by 1-on-1 laser induced damage threshold testing method, equivalent to the performances of the fused quartz substrate with SiO2-HMDS. Meanwhile, the contact angle between SiO2-MTES and water reaches 117.3 degrees, and the transmittance stability of the SiO2-MTES is good in the high humidity environment with relative humidity greater than 90%. Results of multi-wiping experiments show that the friction-resistant mechanical strength of SiO2-MTES is significantly better than that of SiO2-HMDS, which effectively improves the binding strength between the film and the optical components.
引用
收藏
页码:525 / 530
页数:6
相关论文
共 19 条
  • [1] Vapor Phase Ammonia Curing to Improve the Mechanical Properties of Antireflection Optical Coatings Designed for Power Laser Optics
    Avice, Jeremy
    Brotons, Guillaume
    Ruello, Pascal
    Vaudel, Gwenaelle
    Guediche, Amira
    Piombini, Herve
    [J]. GELS, 2023, 9 (02)
  • [2] Nd-doped Mesoporous Borosilicate Bioactive Glass-ceramic Bone Cement
    Chen Cheng
    Ding Jingxin
    Wang Hui
    Wang Deping
    [J]. JOURNAL OF INORGANIC MATERIALS, 2022, 37 (11) : 1245 - 1258
  • [3] Damage-Resistant Sol-Gel Optical Coatings for Advanced Lasers at CEL-V
    Floch, H. G.
    Belleville, P. F.
    [J]. JOURNAL OF SOL-GEL SCIENCE AND TECHNOLOGY, 1994, 2 (1-3) : 695 - 705
  • [4] Effect of acid, water and alcohol ratios on sol-gel preparation of antireflective amorphous SiO2 coatings
    Kesmez, Omer
    Burunkaya, Esin
    Kiraz, Nadir
    Camurlu, H. Erdem
    Asilturk, Meltem
    Arpac, Ertugrul
    [J]. JOURNAL OF NON-CRYSTALLINE SOLIDS, 2011, 357 (16-17) : 3130 - 3135
  • [5] LI F Q, 2013, Laser & Optoelectronics Progress, V50
  • [6] Research Progress on High Throughput Parallel Synthesis of Micro-nano Powders Libraries
    Liu Qian
    Wang Jiacheng
    Zhou Zhenzhen
    Xu Xiaoke
    [J]. JOURNAL OF INORGANIC MATERIALS, 2021, 36 (12) : 1237 - 1246
  • [7] High-performance passively Q-switched fiber laser based on CuFeO2/SiO2 as saturable absorber
    Liu, Yang
    Xu, Chongyang
    Xu, Yingtian
    Li, Li
    Jing, Yuanyuan
    Zhang, He
    Fan, Jie
    Jin, Liang
    Zou, Yonggang
    Ma, Xiaohui
    [J]. OPTICS COMMUNICATIONS, 2023, 546
  • [8] Lu2O3-MgO Nano-powder: Synthesis and Fabrication of Composite Infrared Transparent Ceramics
    Man Xin
    Wu Nan
    Zhang Mu
    He Hongliang
    Sun Xudong
    Li Xiaodong
    [J]. JOURNAL OF INORGANIC MATERIALS, 2021, 36 (12) : 1263 - 1269
  • [9] Shao Jian-da, 2016, Optics and Precision Engineering, V24, P2889, DOI 10.3788/OPE.20162412.2889
  • [10] Porous Silica Antireflective Film at Ultraviolet Laser Wavelength (266 nm)
    Shen Bin
    Xiong Huai
    Zhang Xu
    Li Haiyuan
    [J]. ACTA OPTICA SINICA, 2020, 40 (22)