• Spectroscopy and Spectral Analysis
  • Vol. 33, Issue 4, 872 (2013)
SHANG Meng-ying1、2、3、*, CAO Lin-hong2、3, LIU Miao1, LUO Xuan1, REN Hong-bo1, YE Xin1, TANG Yong-jian1, and JIANG Xiao-dong1
Author Affiliations
  • 1[in Chinese]
  • 2[in Chinese]
  • 3[in Chinese]
  • show less
    DOI: 10.3964/j.issn.1000-0593(2013)04-0872-05 Cite this Article
    SHANG Meng-ying, CAO Lin-hong, LIU Miao, LUO Xuan, REN Hong-bo, YE Xin, TANG Yong-jian, JIANG Xiao-dong. Study on the Preparation and Properties of Novel Silica Microporous Antireflective Coating by Sol-Gel Process[J]. Spectroscopy and Spectral Analysis, 2013, 33(4): 872 Copy Citation Text show less

    Abstract

    Silica sol was prepared by acid catalyzed sol-gel process using tetraethylorthosilicate (TEOS) as precursor and dimethyldietoxysilane (DDS) as pore-forming agent. A novel kind of monolayer microporous silica anti-reflective (AR) coating was obtained on K9 glass substrate by dip-coating technique and then heat treated at 500 ℃. The effects of different DDS/TEOS molar ratios on refractive index, transmittance and hardness were investigated. A positive correlation was found between the transmittance and the DDS/TEOS molar ratio due to the increasing porosity. The maximum transmittance can reach 99.7% with the molar ratio of DDS/TEOS rising to 1∶1. Meanwhile, the refractive index was found quite close to the ideal value 1.22. Nevertheless, higher molar ratio will lead to a bad film-forming property. On the other hand, the hardness of the coatings decreased with the DDS increasing but still remained more than 2 h when the transmittance reached highest. Besides, these coatings exhibit a well abrasion-resistance and excellent adhesivity. The maximum transmittance was only dropped by 0.071% and 0.112% after abrasion for 500 and 1 000 times respectively. Accelerated corrosion tests indicated that the transmittance of traditional coatings rapidly fell down to the substrate level (~92%) after immersion for 5 min, while the transmittance of our novel coating almost linearly decreased and was kept 93.2% after 56 min. In other words, the environment-resistance of our novel silica AR coating is ten times higher than that of traditional ones. The promotions of the coating performances benefit from its micropore structure(~0.4 nm) with which water molecule can be effectively prevented. With its high transmittance, good mechanical properties and high environment-resistance, this kind of novel coating has a potential application in the field of solar glass modification to improve its anti-reflective properties.
    SHANG Meng-ying, CAO Lin-hong, LIU Miao, LUO Xuan, REN Hong-bo, YE Xin, TANG Yong-jian, JIANG Xiao-dong. Study on the Preparation and Properties of Novel Silica Microporous Antireflective Coating by Sol-Gel Process[J]. Spectroscopy and Spectral Analysis, 2013, 33(4): 872
    Download Citation