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SiO2 Coatings Prepared by Sol-Gel Process Protecting Silver from Atomic Oxygen Erosion

机译:溶胶-凝胶法制备的SiO2涂层可保护银免受原子氧侵蚀

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SiO2 coatings were deposited on silver foils substrate by sol-gel method and their atomic oxygen (AO) erosion resistance was tested in a ground-based AO simulator.The surface morphologies and structures of the SiO2 coatings were investigated by Scanning Electron Microscopy (SEM),X-Ray Photoelectron Spectroscopy (XPS).The experimental results clearly demonstrate that this kind of coatings provided a good protection from AO attack.The erosion yield of the coatings was 2×10-26 cm3/atom,decreased by 30 times compared with that of the uncoated silver foils.This SiO2 layer significantly retarded the penetration of oxygen atoms,preventing further oxidation of the bulk silver.It was found that after AO exposure,the film structure tends to transfer from SiOH to amorphous SiO2.This implies that a more stable amorphous SiO2 structure could be formed in sol-gel SiO2 film during AO exposure.The results demonstrate that the coatings prepared by sol-gel technique can protect the silver from atomic oxygen erosion and can be used easily for practical application.
机译:SiO2涂层通过溶胶-凝胶法沉积在银箔基底上,并在基于地面的AO仿真器中测试了其耐原子氧(AO)侵蚀性。通过扫描电子显微镜(SEM)研究了SiO2涂层的表面形态和结构实验结果清楚地表明,这种涂层提供了良好的防护,防止了AO的侵袭。涂层的腐蚀产量为2×10-26 cm3 / atom,与之相比降低了30倍。 SiO2层显着阻碍了氧原子的渗透,防止了块状银的进一步氧化。发现在AO暴露后,膜结构倾向于从SiOH转移到非晶SiO2。结果表明,溶胶-凝胶技术制备的涂层能够保护银免受原子氧的影响,从而在溶胶-凝胶SiO2薄膜中形成更稳定的非晶态SiO2结构。氧气侵蚀,可以很容易地用于实际应用。

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