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lxw1987金蟲 (小有名氣)
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[交流]
求助英文翻譯摘要
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Our particle ordering technique of several nanoparticles was applied to anti-reflection coating films, which consist of a double layer structure formed by spin-coating, for commercial computer displays. These double-layered coating films are composed of ordered conductive nanoparticles such as antimony-doped tin oxides (ATO), indium-tin oxides (ITO) and noble metals in the 1st layer and silica matrix in the 2nd layer. The sheet resistance of the double-layered conductive anti-reflection films can be controlled from 103 Ohm/sq. to 107 Ohm/sq. by varying ingredient of the 1st layer. And by forming nanoparticles ordered 1st layer in the double-layered coating film, we were successful in realizing a low reflectance in any visible wavelength region (a wide reflection curve), due to an inclining refractive index structure. Furthermore, in the 2nd layer composed of 50 nm porous silica nanoparticles with a unique core–shell structure and a silica matrix, which indicates a lower refractive index, the reflectance is significantly reduced in any visible wavelength region. ps:不需要機(jī)器翻譯,語言書面點 |
銀蟲 (小有名氣)
金蟲 (小有名氣)
金蟲 (小有名氣)
| 我們的多種納米微粒排序技術(shù)已應(yīng)用于商用電子計算機(jī)抗反射涂層薄膜,該薄膜包含由旋涂法形成的雙層結(jié)構(gòu)。這些雙層涂層薄膜的第一層是由有序?qū)щ娂{米微粒如銻摻雜的錫氧化物(ATO)、銦-錫氧化物(ITO)、以及貴金屬形成所組成,第二層是硅膠基質(zhì)。雙層導(dǎo)電抗反射薄膜的薄層電阻可通過改變第一層的組分而被控制在103 Ohm/sq. ~107 Ohm/sq.。通過在雙層涂層薄膜的第一層中形成有序排列的納米微粒,我們成功地實現(xiàn)了在任何可見光波長范圍內(nèi)的低反射(寬反射曲線),這應(yīng)歸功于其傾向折射率的結(jié)構(gòu)。此外,由50nm厚具有獨特核-殼結(jié)構(gòu)的多孔硅膠微粒和低折射率的硅膠基質(zhì)組成的第二層,其折射率在任何可見光波長范圍內(nèi)顯著減小。 |
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