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    • 4. 发明公开
    • Sol-gel method of making multicomponent glass
    • Sol-Gel-Verfahren zur Herstellung eines Multomponentenglate。
    • EP0565277A1
    • 1993-10-13
    • EP93302283.2
    • 1993-03-25
    • AT&T Corp.
    • Bruce, Allan JamesRabinovich, Eliezer M.
    • C03B8/02C03B37/016C03B19/06
    • C03C1/008C03B37/016C03B2201/31C03B2201/32C03B2201/36C03B2201/40C03B2201/42C03B2201/50Y10S65/901
    • Relatively large bodies of low-alkali silicate and other glass can be prepared conveniently by a particulate sol-gel process. The glass comprises at least 85 mole % Si0 2 , 1-12 mole % oxide of one or more of Li, Na, K, Rb, Cs, Ti and Zr, 0-6 mole % of oxide of Al, and optionally at most 2.5 mole % of oxide of elements other than Si, Li, Na, K, Rb, Cs, Ti, Zr and Al. The process comprises forming particles from a first sol that comprises Si and one or more of Li, Na, K, Rb, Cs, Ti and Zr, and optionally additionally comprises Al. The process further comprises forming a second sol by dispersing the particles in an aqueous liquid, gelling the second sol, and heat treating the resulting gel body such that the glass results.
    • 相对较大的低碱性硅酸盐和其他玻璃体可以通过颗粒溶胶 - 凝胶法方便地制备。 玻璃包含至少85摩尔%的SiO 2,1-12摩尔%的Li,Na,K,Rb,Cs,Ti和Zr中的一种或多种的氧化物,0-6摩尔%的Al的氧化物,以及任选的至多2.5 除Si,Li,Na,K,Rb,Cs,Ti,Zr和Al以外的元素的氧化物的摩尔%。 该方法包括从包含Si和Li,Na,K,Rb,Cs,Ti和Zr中的一种或多种的第一溶胶形成颗粒,并且任选地另外包含Al。 该方法还包括通过将颗粒分散在水性液体中形成第二溶胶,使第二溶胶凝胶化,并对所得凝胶体进行热处理,从而得到玻璃。
    • 7. 发明公开
    • Sol-gel method for forming thin luminescent films
    • Sol-Gel-Verfahren zur Herstellung vondünnenlumineszierenden Filmen。
    • EP0310308A2
    • 1989-04-05
    • EP88308861.9
    • 1988-09-23
    • AT&T Corp.
    • Fratello, Vincent J.Rabinovich, Eliezer M.Shmulovich, Joseph
    • C09K11/79C09K11/08
    • C09K11/7792C09K11/0822C09K11/7774H01J29/20
    • A sol-gel procedure is described for making display devices with luminescent films. The procedure typically involves hydrolysis and polymerization of an organometallic compound together with selected luminescent ions, and coating of a substrate and then heat treatment to form a polycrystalline layer. The procedure is particularly useful for making cathode ray tubes, especially those for high power operation because of the excellent luminescence characteristics obtained, good thermal contact from the luminescent layer to faceplate and low cost of the procedure. Also described are the devices obtained which exhibit a layer of complex oxide with network structure much like the corresponding bulk compound.
    • 描述了制造具有发光膜的显示装置的溶胶 - 凝胶方法。 该方法通常涉及有机金属化合物与所选择的发光离子的水解和聚合,以及基材的涂覆,然后进行热处理以形成多晶层。 该方法特别可用于制造阴极射线管,特别是用于大功率操作的阴极射线管,因为所获得的发光特性优异,从发光层到面板的良好热接触以及程序成本低。 还描述了获得的具有网络结构的复合氧化物层的获得的装置,其类似于相应的本体化合物。