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首页> 外文期刊>ACS applied materials & interfaces >Fabrication of a Silica-Silica Nanoparticle Monolayer Array Nanocomposite Film on an Anodic Aluminum Oxide Substrate and Its Optical and Tribological Properties
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Fabrication of a Silica-Silica Nanoparticle Monolayer Array Nanocomposite Film on an Anodic Aluminum Oxide Substrate and Its Optical and Tribological Properties

机译:在阳极氧化铝基底上制造二氧化硅 - 二氧化硅纳米粒子单层阵列纳米复合膜及其光学和摩擦学特性

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摘要

The fabrication and properties of silica nanoparticle monolayer arrays (SNMAs) immobilized on silica films on nanoporous anodic aluminum oxide (AAO) substrates by polymerization of silicic acid and a two-step spin-coating technique are reported. Reflection spectra of the obtained silica-SNMA nanocomposite films on AAO substrates were almost the same as those of the original AAO substrate. The coefficient of friction at an applied load of 0.98 N under dry conditions for a film fabricated under optimal conditions was significantly decreased by 76% with respect to that without a silica-SNMA nanocomposite film on an AAO substrate. The results also showed a lower coefficient of friction than that for MoS2 nanoparticles (commonly used for self-lubricating films) deposited on an AAO substrate. We demonstrate that the silica-SNMA nanocomposite film with an optimal nanoroughness, thickness, and wear resistance can be used as a novel coating film for AAO substrates with both a high color degree of freedom and a low coefficient of friction at a high applied load (ca. 1 N).
机译:报道了通过硅酸聚合报道固定在纳米多孔阳极氧化铝(AAO)基材上固定在二氧化硅膜上的二氧化硅纳米颗粒单层阵列(SNAMS)的制备和性质。在AaO底物上得到的二氧化硅-NAMA纳米复合薄膜的反射光谱与原始AAO底物的底物几乎相同。在最佳条件下制造的薄膜的干燥条件下,在干燥条件下施加载荷的摩擦系数对于AaO底物上没有二氧化硅-SNMA纳米复合膜而显着降低76%。结果还显示出比沉积在AaO底物上的MOS2纳米颗粒(通常用于自润滑膜)的MOS2纳米颗粒(通常用于自润滑膜)的摩擦系数较低。我们证明,具有最佳纳米或耐磨性,厚度和耐磨性的二氧化硅-NANMA纳米复合膜可用作AaO基板的新型涂膜,其具有高色度的自由度和高施加的负载下的低摩擦系数( CA. 1 n)。

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