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Fabrication of Refractive Index Tunable Coating with Moisture-Resistant Function for High-Power Laser Systems Based on Homogeneous Embedding of Surface-Modified Nanoparticles

机译:基于均匀嵌入表面改性纳米颗粒的高功率激光系统耐湿功能的折射率可调涂层的制造

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摘要

Moisture-resistant silicone coatings were prepared on the surface of potassium dihydrogen phosphate (KDP) crystal by means of spin-coating, in which hydrophobic-modified SiO2 nanoparticles were embedded in a certain proportion. The refractive index of such coating can be tuned arbitrarily in the range of 1.21–1.44, which endows the KDP optical component with excellent transmission capability as well as the moisture proof effect. A dual-layer anti-reflective coating system was obtained by covering this silicone coating with a porous SiO2 coating which is specially treated to enhance the moisture resistance. Transmittance of such a dual-layer coating system could reach 99.60% and 99.62% at 1064 nm and 532 nm, respectively, by precisely matching the refractive index of both layers. Furthermore, the long-term stability of this coating system has been verified at high humidity ambient of 80% RH for 27 weeks.
机译:通过旋涂在二氢磷酸钾(KDP)晶体表面上制备耐湿的硅氧烷涂层,其中疏水改性的SiO2纳米颗粒以一定比例嵌入。这种涂层的折射率可以在1.21-1.44的范围内任意进行调节,其赋予KDP光学部件具有优异的传动能力以及防潮效果。通过用多孔SiO 2涂层覆盖具有多孔SiO 2涂层来获得双层抗反射涂层系统,该涂层专门处理以增强防潮性。通过精确地匹配两层的折射率,这种双层涂层系统的透射率分别在1064nm和532nm处分别在1064nm和532nm处达到99.60%和99.62%。此外,该涂层系统的长期稳定性已经在80%RH的高湿度环境下验证了27周。

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