首页> 外国专利> Coating glass or ceramic substrate with anti-reflective layer using sol-gel process, employs e.g. silicon-aluminum mixed oxide with adsorbed hydrophobe present in sol-gel binder

Coating glass or ceramic substrate with anti-reflective layer using sol-gel process, employs e.g. silicon-aluminum mixed oxide with adsorbed hydrophobe present in sol-gel binder

机译:使用例如溶胶-凝胶法的具有抗反射层的玻璃或陶瓷基板的涂布方法为:溶胶-凝胶粘合剂中存在的具有吸附疏水性的硅铝混合氧化物

摘要

The porous anti-reflective layer comprises a metal, metal oxide, zinc oxide, tin oxide, aluminum oxide and/or their mixtures. It is especially a silicon-aluminum mixed oxide. A hydrophobic substance is deposited on the anti-reflective layer, at least locally. It is introduced into pores of the layer, forming a coating and/or total-area internal coating. The hydrophobe, especially being a silica sol, is present as a component of the sol-gel binder. The anti-reflective layer includes porous nanoparticles. Their grain size is preferably about 8 nm. The porosity of the nanoparticles amounts to 10%-60% of the total volume of the layer. Coating onto the substrate is by a spraying, immersion, wiping, painting or spreading process. The layer is fired, preferably at a temperature between 430[deg]C and 560[deg]C for about 60 minutes. The surface is thermally-prestressed following heating, by further heating, preferably to about 670[deg]C for about 4 minutes. The hydrophobe is applied or introduced into the heated layer including porous nanoparticles. Before applying the sol-gel layer, the surface of the substrate is activated by corona discharge, flaming, ultraviolet treatment, plasma activation, sand blasting, and/or chemical treatment such as etching. Bonding agents are applied first, from the gas or liquid phase. The hydrophobe is applied by immersion, capillary techniques, centrifugation, spraying, painting, rolling and/or flooding. The hydrophobe is heated preferably for 1 hour, to e.g. 150[deg]C. Its coated thickness lies between that of a molecular monolayer and about 130 nm. The profile and duration of process parameters are adjusted for application of the sol-gel layer together with the hydrophobe, preferably by spraying or immersion.
机译:多孔抗反射层包括金属,金属氧化物,氧化锌,氧化锡,氧化铝和/或它们的混合物。特别是硅铝混合氧化物。疏水性物质至少局部地沉积在抗反射层上。将其引入层的孔中,形成涂层和/或总面积内部涂层。疏水物,特别是二氧化硅溶胶,作为溶胶-凝胶粘合剂的组分存在。抗反射层包括多孔纳米颗粒。它们的晶粒尺寸优选为约8nm。纳米颗粒的孔隙率占层的总体积的10%-60%。通过喷涂,浸入,擦拭,上漆或铺展过程在基材上进行涂覆。该层优选在430℃和560℃之间的温度下焙烧约60分钟。加热后,通过进一步加热,优选加热到约670℃约4分钟,对表面进行热预应力处理。将疏水物施加或引入包含多孔纳米颗粒的加热层中。在施加溶胶-凝胶层之前,通过电晕放电,火焰,紫外线处理,等离子体活化,喷砂和/或化学处理(例如蚀刻)活化基材表面。首先从气相或液相施加粘合剂。疏水剂通过浸没,毛细管技术,离心,喷涂,喷涂,滚涂和/或浸水来施加。疏水物优选加热1小时,例如加热至1小时。 150℃。它的涂层厚度介于分子单层的厚度和约130 nm之间。调节工艺参数的轮廓和持续时间以优选与溶胶一起与疏水剂一起施加溶胶-凝胶层,优选通过喷雾或浸没。

著录项

  • 公开/公告号DE102005020168A1

    专利类型

  • 公开/公告日2006-11-02

    原文格式PDF

  • 申请/专利权人 SCHOTT AG;

    申请/专利号DE20051020168

  • 申请日2005-04-28

  • 分类号C03C17/25;C03C17/42;H01L31/0216;H01L31/0232;H01L31/042;A47K3/30;A47F3/00;B60Q1/04;F21S8/10;

  • 国家 DE

  • 入库时间 2022-08-21 21:20:17

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