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Low-emitting surfaces prepared by applying transparent aluminum-doped zinc oxide coatings via a sol-gel process

机译:通过溶胶-凝胶工艺涂覆透明的铝掺杂氧化锌涂层制备的低发射表面

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摘要

Polycrystalline transparent conductive oxide thin films based on aluminum-doped zinc oxide (AZO) have been prepared on soda-lime glass by using an inorganic sol-gel process and the dip-coating technique. The multilayered films were crystallized on the substrate and subsequently annealed in a reducing atmosphere to enhance the number of free charge carriers. Significant characteristics of the functional coatings, such as crystallinity, surface smoothness, layer thickness, electrical conductivity, as well as the optical properties in a large spectral range between 0.25 and 35 μ were analyzed. The obtained samples are highly transparent with a visual transmittance above 0.85 and show specific resistivities of up to 1.6 • 10~(- 3) Ω• cm. Applying an optimized AZO-coating with at most 500 nm is sufficient to reduce the surface emittance from 0.89 to less than 0.45 in the infrared.
机译:利用无机溶胶-凝胶法和浸涂技术在钠钙玻璃上制备了基于铝掺杂氧化锌(AZO)的多晶透明导电氧化物薄膜。多层膜在基板上结晶,然后在还原气氛中退火以增加自由电荷载流子的数量。分析了功能涂层的重要特性,例如结晶度,表面光滑度,层厚度,电导率以及在0.25至35μ之间的大光谱范围内的光学特性。所获得的样品是高度透明的,可见光透射率高于0.85,并且显示出高达1.6•10〜(-3)Ω•cm的电阻率。使用最优化的AZO涂层(至多500 nm)足以将红外表面的发射率从0.89降低到小于0.45。

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