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    • 2. 发明授权
    • Anti-viral member
    • 抗病毒成员
    • US09045855B2
    • 2015-06-02
    • US13142118
    • 2009-12-28
    • Yoshie FujimoriTsuruo NakayamaYoko Fukui
    • Yoshie FujimoriTsuruo NakayamaYoko Fukui
    • A01N25/08D06M11/13A61K39/42A01N25/34A01N59/20D06M11/42D06M11/53D06M11/67D06M13/188D06M13/513D06M16/00D06M23/08
    • D06M11/13A01N25/34A01N59/20A61K39/42D06M11/42D06M11/53D06M11/67D06M13/188D06M13/513D06M16/00D06M23/08A01N25/10A01N2300/00
    • Disclosed is an anti-viral member which can inactivate a virus. Specifically disclosed is an anti-viral member which is characterized by comprising a base material, univalent copper compound microparticles, and inorganic microparticles which are provided for the purpose of retaining the univalent copper compound microparticles on the base material and each of which has a silane monomer bound to the surface thereof via a chemical bond, wherein the inorganic microparticles are bound to one another via chemical bonds formed between the silane monomers provided on the surfaces thereof, and each of the inorganic microparticles is bound to the base material via a chemical bond between the silane monomer and the base material to form spaces in which the univalent copper compound microparticles are to be retained. The anti-viral member has an extremely high anti-viral activity compared to those achieved by the conventional binder immobilization techniques, and is applicable to various materials or various products to which the materials are applied.
    • 公开了可以灭活病毒的抗病毒成员。 具体公开了一种抗病毒成分,其特征在于包含基材,一价铜化合物微粒和无机微粒,其为了将一价铜化合物微粒保留在基材上而设置,每个具有硅烷单体 通过化学键与其表面结合,其中无机微粒通过在其表面上提供的硅烷单体之间形成的化学键而彼此结合,并且每个无机微粒通过化学键结合到基材上 硅烷单体和基材以形成保留一价铜化合物微粒的空间。 与通过常规的粘合剂固定技术获得的抗病毒成分相比,抗病毒成分具有极高的抗病毒活性,并且适用于应用材料的各种材料或各种产品。