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    • 1. 发明授权
    • Nanostructured coating for a carrying base
    • 用于承载基底的纳米结构涂层
    • US07820292B2
    • 2010-10-26
    • US11920299
    • 2006-05-16
    • Igor ShcherbakovVladimir SleptsovSergey DmitrievMikhail Itkis
    • Igor ShcherbakovVladimir SleptsovSergey DmitrievMikhail Itkis
    • B32B9/00
    • C08J7/06B82Y30/00C08J2367/02C08K3/04C09D5/28C09D7/61Y10T428/24628Y10T428/249967Y10T428/24997Y10T428/265Y10T428/30Y10T428/31681Y10T428/31786
    • The invention pertains to high-molecular compound-based composite materials using carbon in nanostructured coatings including additional elements and bonds.Nanostructured coating of the carrying base comprises layers of amorphous carbon of sp-, sp2- and sp3-hybridized states of carbon atoms.New is that coating with a highly-developed surface of the polyester film base is directly bonded by the layer of sp3-hybridized state of carbon atoms and has on top an extra metal layer 25-250 nm thick; at the same time the film base surface has corrugations 10-30 nm deep and/or is furnished with pores 0.2-6 micron in size of a total volume of 10-60%, with ⅕-⅓ portion of pores made through.The proposed technical solution is a new film material with functional nanostructured coating intended to be used as an anode of the electrolytic capacitor due to an accumulated electric potential in current-carrying layers separated by the polyester base having a highly developed modified surface that provided their adhesion and improved the electrophysical characteristics of the material.
    • 本发明涉及在纳米结构涂层中使用碳的高分子化合物基复合材料,包括另外的元素和键。 承载基底的纳米结构涂层包含sp-,sp2-和sp3 - 杂原子碳原子状态的无定形碳层。 新的是聚酯薄膜基底的高度开发的表面的涂层直接通过sp3杂化的碳原子层结合,并且在25-250nm厚的顶层上形成多余的金属层; 同时膜基面具有10-30nm深的波纹和/或具有总体积为10-60%的尺寸为0.2-6微米的孔,并具有通过的孔的1/3部分。 所提出的技术方案是具有功能性纳米结构涂层的新型薄膜材料,由于由具有高度发展的改性表面的聚酯基体分离的载流层中积聚的电位而提供其粘附力,因此其用作电解电容器的阳极。 并改善了材料的电物理特性。
    • 2. 发明申请
    • Nanostructured Coating for a Carrying Base
    • 用于承载底座的纳米结构涂层
    • US20090202784A1
    • 2009-08-13
    • US11920299
    • 2006-05-16
    • Igor ShcherbakovVladimir SleptsovSergey DmitrievMikhail Itkis
    • Igor ShcherbakovVladimir SleptsovSergey DmitrievMikhail Itkis
    • B32B3/28B32B27/36
    • C08J7/06B82Y30/00C08J2367/02C08K3/04C09D5/28C09D7/61Y10T428/24628Y10T428/249967Y10T428/24997Y10T428/265Y10T428/30Y10T428/31681Y10T428/31786
    • The invention pertains to high-molecular compound-based composite materials using carbon in nanostructured coatings including additional elements and bonds.Nanostructured coating of the carrying base comprises layers of amorphous carbon of sp-, sp2- and sp3-hybridized states of carbon atoms.New is that coating with a highly-developed surface of the polyester film base is directly bonded by the layer of sp3-hybridized state of carbon atoms and has on top an extra metal layer 25-250 nm thick; at the same time the film base surface has corrugations 10-30 nm deep and/or is furnished with pores 0.2-6 micron in size of a total volume of 10-60%, with ⅕-⅓ portion of pores made through.The proposed technical solution is a new film material with functional nanostructured coating intended to be used as an anode of the electrolytic capacitor due to an accumulated electric potential in current-carrying layers separated by the polyester base having a highly developed modified surface that provided their adhesion and improved the electrophysical characteristics of the material.
    • 本发明涉及在纳米结构涂层中使用碳的高分子化合物基复合材料,包括另外的元素和键。 承载基底的纳米结构涂层包含sp-,sp2-和sp3 - 杂原子碳原子状态的无定形碳层。 新的是聚酯薄膜基底的高度开发的表面的涂层直接通过sp3杂化的碳原子层结合,并且在25-250nm厚的顶层上形成多余的金属层; 同时胶片基面具有10-30nm深的波纹和/或具有总体积为10-60%的尺寸为0.2-6微米的孔,其中1 / 5-1 / 3部分的孔 通过。 所提出的技术方案是具有功能性纳米结构涂层的新型薄膜材料,由于由具有高度发展的改性表面的聚酯基体分离的载流层中积聚的电位而提供其粘附性,因此其用作电解电容器的阳极。 并改善了材料的电物理特性。