Wu Hsing-Yu, Chen Hong-Wei, Huang Shao-Rong, Hsiao Li-Jen, Cheng Ching-Ling, Yu Guo-Yu, Sun Yung-Shin, Hsu Jin-Cherng
Taiwan Space Agency, Taiwan.
National Central University, Center for Astronomical Physics and Engineering, Department of Optics and Photonics, Taoyuan City, 320317, Taiwan.
Heliyon. 2024 Jul 31;10(15):e35507. doi: 10.1016/j.heliyon.2024.e35507. eCollection 2024 Aug 15.
Optical paths in telescopes frequently incorporate silver mirrors for high sensitivity. Unfortunately, silver mirrors without protective coatings are susceptible to sulfurization and oxidation, compromising their quality. Even with protective layers, insufficient adhesion between the coating and the silver film can lead to peeling, exposing the silver to external environments and affecting its quality. This study aimed to identify dielectric materials with superior adhesion to silver, rendering them ideal choices for silver coating applications. By electron gun evaporation, different dielectric layers were deposited on the top and bottom of the silver film under a substrate temperature below 150 °C. These coatings were composed of materials with desired refractive indices, including aluminum oxide (AlO), aluminum-doped silicon, magnesium fluoride (MgF), and other dielectrics. Following the deposition, a tape adhesion test was conducted to evaluate the bond strength of the samples. X-ray photoelectron spectroscopy (XPS) analysis was carried out to investigate the interaction between silver and its neighboring layers. The results revealed that AlO and MgF exhibited exceptional adhesion to silver. Moreover, these multilayer coatings can effectively enhance the reflectance of silver in the visible (VIS) wavelength ranges.
望远镜中的光路经常采用银镜以实现高灵敏度。不幸的是,没有保护涂层的银镜容易发生硫化和氧化,从而影响其质量。即使有保护层,涂层与银膜之间的附着力不足也会导致剥落,使银暴露于外部环境并影响其质量。本研究旨在确定对银具有优异附着力的介电材料,使其成为银涂层应用的理想选择。通过电子枪蒸发,在低于150°C的基板温度下,在银膜的顶部和底部沉积不同的介电层。这些涂层由具有所需折射率的材料组成,包括氧化铝(AlO)、铝掺杂硅、氟化镁(MgF)和其他电介质。沉积后,进行胶带附着力测试以评估样品的粘结强度。进行X射线光电子能谱(XPS)分析以研究银与其相邻层之间的相互作用。结果表明,AlO和MgF对银表现出优异的附着力。此外,这些多层涂层可以有效地提高银在可见光(VIS)波长范围内的反射率。