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    • 6. 发明授权
    • Method for producing nanosilica plates
    • 纳米二氧化硅板的制造方法
    • US07125916B2
    • 2006-10-24
    • US10685213
    • 2003-10-14
    • Jiang-Jen LinChien-Chia Chu
    • Jiang-Jen LinChien-Chia Chu
    • C08K9/06C08K3/34
    • C09C1/42C01B33/12C01P2002/78C01P2002/88C01P2004/20C08K9/04Y10T428/2982
    • The present invention relates to an exfoliating agent and to a process for producing random form of nanoscale silicate plates. Two types of exfoliating agents are applied in the present invention, which respectively have the formula: wherein R is a polyoxybutylene group, polyoxypropylene group, poly(oxyethylene/oxypropylene) group, or polyoxyethylene group. In this invention, layered silicate clays are exfoliated into random silicate plates by acidifying AMO or AEO with inorganic acid, adding the acidified AMO or AEO to layered silicate clay with agitation, and adding sodium hydroxide or chloride of alkali metal or alkaline-earth metal, in ethanol, water and a hydrophobic organic solvent to the intermediate product and repeating phase separation procedures to isolate random silicate plates from water phase.
    • 本发明涉及一种去角质剂和一种生产随机形式的纳米硅酸盐板的方法。 在本发明中分别使用两种类型的去角质剂,其分别具有下式:其中R是聚氧丁烯基,聚氧丙烯基,聚(氧乙烯/氧丙烯)基或聚氧乙烯基。 在本发明中,通过用无机酸酸化AMO或AEO将层状硅酸盐粘土剥离成无规硅酸盐板,搅拌下将酸化的AMO或AEO加入层状硅酸盐粘土中,加入碱金属或碱土金属的氢氧化钠或氯化物, 在乙醇,水和疏水性有机溶剂中的中间产物,并重复相分离程序以从水相中分离出无规硅酸盐板。
    • 8. 发明申请
    • NANOSILICATE PLATES
    • 纳米玻璃板
    • US20090326132A1
    • 2009-12-31
    • US12114765
    • 2008-05-03
    • Jiang-Jen LinChien-Chia Chu
    • Jiang-Jen LinChien-Chia Chu
    • C08K3/34
    • C09C1/42C01B33/12C01P2002/78C01P2002/88C01P2004/20C08K9/04Y10T428/2982
    • The present invention relates to random form of nanoscale silicate plates produced by a process using an exfoliating agent. The exfoliating agent used in the present invention has the formula: where n=1 to 5 wherein n=1 to 5 and R is a polyoxypropylene group, poly(oxyethylene/oxypropylene) group, or polyoxyethylene group. In this invention, layered silicate clays are exfoliated into random silicate plates by acidifying AMO with inorganic acid, adding the acidified AMO to layered silicate clay with agitation, and adding sodium hydroxide or chloride of alkali metal or alkaline-earth metal, in ethanol, water and a hydrophobic organic solvent to the intermediate product and repeating phase separation procedures to isolate random silicate plates from water phase.
    • 本发明涉及通过使用去角质剂的方法制备的纳米级硅酸盐板的随机形式。 本发明中使用的去角质剂具有下式:n = 1〜5,n = 1〜5,R为聚氧丙烯基,聚(氧乙烯/氧丙烯)基或聚氧乙烯基。 在本发明中,层状硅酸盐粘土通过用无机酸酸化AMO而剥离成无规硅酸盐板,在搅拌下将酸化的AMO加入到层状硅酸盐粘土中,并在乙醇,水中加入碱金属或碱土金属的氢氧化钠或氯化物 和疏水性有机溶剂,并重复相分离程序以从水相中分离出无规硅酸盐板。
    • 9. 发明授权
    • Method for producing nanosilicate plates
    • 纳米硅酸盐板的制造方法
    • US07442728B2
    • 2008-10-28
    • US11164165
    • 2005-11-13
    • Jiang-Jen LinChien-Chia Chu
    • Jiang-Jen LinChien-Chia Chu
    • C08K9/06C08K3/34
    • C09C1/42C01B33/12C01P2002/78C01P2002/88C01P2004/20C08K9/04Y10T428/2982
    • The present invention relates to an exfoliating agent and to a process for producing random form of nanoscale silicate plates. The exfoliating agent applied in the present invention has the formula: wherein n=1 to 5 and R is a polyoxypropylene group, poly(oxyethylene/oxypropylene) group, polyoxybutylene group, or polyoxyethylene group. In this invention, layered silicate clays are exfoliated into random silicate plates by acidifying AMO with inorganic acid, adding the acidified AMO to layered silicate clay with agitation, and adding sodium hydroxide or chloride of alkali metal or alkaline-earth metal, in ethanol, water and a hydrophobic organic solvent to the intermediate product and repeating phase separation procedures to isolate random silicate plates from water phase.
    • 本发明涉及一种去角质剂和一种生产随机形式的纳米硅酸盐板的方法。 用于本发明的去角质剂具有下式:其中n = 1〜5,R为聚氧丙烯基,聚(氧乙烯/氧丙烯)基,聚氧丁烯基或聚氧乙烯基。 在本发明中,层状硅酸盐粘土通过用无机酸酸化AMO而剥离成无规硅酸盐板,在搅拌下将酸化的AMO加入到层状硅酸盐粘土中,并在乙醇,水中加入碱金属或碱土金属的氢氧化钠或氯化物 和疏水性有机溶剂,并重复相分离程序以从水相中分离出无规硅酸盐板。
    • 10. 发明授权
    • Inorganic/organic dispersant and application thereof
    • 无机/有机分散剂及其应用
    • US08653147B2
    • 2014-02-18
    • US13300585
    • 2011-11-20
    • Jiang-Jen LinYen-Chi HsuMing-Li ChiangChien-Chia Chu
    • Jiang-Jen LinYen-Chi HsuMing-Li ChiangChien-Chia Chu
    • B01F3/12C01B33/44B01J31/26
    • B01F17/0007B01F17/005
    • The present invention discloses an inorganic/organic mixed component (I/O) dispersant and applications thereof, which is primarily applied to dispersing nanoparticles of metal oxides. The I/O dispersant of the present invention can be a composite of inorganic clay and an organic surfactant, a composite of inorganic clay and polyoxyalkylene-amine, or a composite of inorganic clay, polyisobutylene succinic anhydride (PIB-SA) and hydrochloric acid salt or tetraalkyl quaternary salt of polyoxyalkylene-amine, or fatty amines. By mixing with the I/O dispersant of the present invention, nanoparticles of a metal oxide can be uniformly dispersed without aggregation particularly at high solid content. The dispersion has a lower viscosity and is relatively stable in storage even at high temperature.
    • 本发明公开了一种主要用于分散金属氧化物纳米颗粒的无机/有机混合组分(I / O)分散剂及其应用。 本发明的I / O分散剂可以是无机粘土和有机表面活性剂的复合物,无机粘土和聚氧化烯胺的复合物,或无机粘土,聚异丁烯琥珀酸酐(PIB-SA)和盐酸盐 或聚氧化烯 - 胺的四烷基季盐,或脂肪胺。 通过与本发明的I / O分散剂混合,金属氧化物的纳米颗粒可以均匀地分散而不聚集,特别是在高固体含量下。 分散体具有较低的粘度,即使在高温下也具有相对稳定的储存性。