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    • 21. 发明公开
    • PROCESS FOR PRODUCING ELECTROCONDUCTIVE INORGANIC OXIDE PARTICLES AND ELECTROCONDUCTIVE INORGANIC OXIDE PARTICLES PRODUCED BY THE PROCESS
    • METHOD FOR PRODUCING电导线,无机氧化物颗粒和通过工艺生产的导电性无机氧化物
    • EP2233434A1
    • 2010-09-29
    • EP08858777.9
    • 2008-12-15
    • Hiraaki Co., Ltd.
    • TAKAKI, TakeshiHIRAAKI, TaiseiNAKASHIMA, Kunihiko
    • C01B13/14C01B19/00C01B33/18C01F7/02C01F17/00C01G9/02C01G19/02C01G23/047C01G25/02C01G31/02C01G53/04C25B1/00H01B1/08H01B13/00
    • C01B33/18C01G9/00C01G9/02C01P2002/54C01P2004/04C01P2006/40H01B1/08H01B1/20
    • An object of the present invention is to provide a conductive inorganic oxide powder that is more fine and reduced in powder resistivity than a conventional conductive inorganic oxide powder. In order to achieve the object, the present invention adopts a method for manufacturing conductive inorganic oxide particles in which conductivity is furnished by doping a dopant metal component into the inorganic oxide particle where a step A through a step D described below are carried out in manufacturing of the conductive inorganic oxide particles. Prepare an inorganic oxide particles-containing slurry which contain the inorganic oxide particles (step A), the inorganic oxide particles-containing slurry which is made to contain a dopant metal component and an electrolysis method is carried out for electrolytic doping to dope a dopant metal component into the inorganic oxide particles by using a electrolytic doping unit 1 (step B), filtering and drying the slurry after finishing the electrolytic doping and collect particles by filter (step C), and firing the particles collected by filter to obtain conductive inorganic oxide particles (step D).
    • 本发明的一个目的是提供一种导电性无机氧化物粉末做更精细和粉末电阻率降低的比现有的导电性无机氧化物粉末。 为了达到上述目的,本发明采用用于制造其中导电性通过掺杂掺杂剂金属组分,从而在那里通过以下描述的步骤D中步骤A的制造进行的无机氧化物颗粒提供导电性无机氧化物粒子的方法 的导电性无机氧化物粒子。 制备含无机氧化物粒子的浆液而含有无机氧化物颗粒(步骤A)中,含无机氧化物粒子的浆液的所有其由含有掺杂剂金属组分,并在电解法进行电解掺杂以掺杂掺杂剂金属 元件到通过使用电解掺杂装置1(步骤B)中,过滤并通过过滤完成电解掺杂后干燥浆料并收集颗粒(步骤C),和烧制由过滤器收集的颗粒,从而获得导电性无机氧化物的无机氧化物粒子 粒子(步骤D)。