TRANSPARENT SUBSTRATE WITH ANTI-REFLECTION COATING
    1.
    发明申请
    TRANSPARENT SUBSTRATE WITH ANTI-REFLECTION COATING 审中-公开
    具有抗反射涂层的透明基材

    公开(公告)号:US20110100424A1

    公开(公告)日:2011-05-05

    申请号:US12921898

    申请日:2009-03-10

    摘要: The subject of the invention is a transparent substrate (6), especially glass substrate, comprising an antireflection coating on at least one of its faces, which is made of a multilayer (A) of thin layers having alternately high and low refractive indices.The multilayer is characterized in that the high-index first layer (1) and/or the high-index third layer (3) are based on a zinc tin mixed oxide, with a ratio, expressed in atomic percent, of the tin to the zinc that is greater than 1.

    摘要翻译: 本发明的主题是透明基板(6),特别是玻璃基板,其包括在其至少一个表面上的抗反射涂层,其由具有交替高和低折射率的多层(A)薄层制成。 该多层的特征在于,高折射率第一层(1)和/或高折射率第三层(3)以锡锡混合氧化物为基准,其中以锡原子百分比表示的锡与锡 大于1的锌。

    SUBSTRATE PROCESSING METHOD
    2.
    发明申请
    SUBSTRATE PROCESSING METHOD 审中-公开
    基板处理方法

    公开(公告)号:US20090011194A1

    公开(公告)日:2009-01-08

    申请号:US12090907

    申请日:2006-10-23

    摘要: Method for the treatment of at least one surface portion of at least one layer A located between a substrate and a layer B of a thin-film multilayer, the layers of which are vacuum-deposited on the substrate having a glass function, according to the invention, is characterized in that: at least one thin layer A is deposited on a surface portion of said substrate, this deposition phase being carried out by a vacuum deposition process; using at least one linear ion source, a plasma of ionized species is generated from a gas or from a gas mixture; at least one surface portion of the layer A is subjected to said plasma so that said ionized species at least partly modifies the surface state of the layer A; and at least one layer B is deposited on a surface portion of the layer A, this deposition phase being carried out by a vacuum deposition process.

    摘要翻译: 用于处理位于薄膜多层的基板和层B之间的至少一个层A的至少一个表面部分的方法,所述薄膜多层的层被真空沉积在具有玻璃功能的基板上,根据 本发明的特征在于:至少一层薄层A沉积在所述衬底的表面部分上,该沉积阶段通过真空沉积工艺进行; 使用至少一个线性离子源,从气体或气体混合物产生离子化物质的等离子体; 层A的至少一个表面部分经受所述等离子体,使得所述离子化物质至少部分地改变层A的表面状态; 并且至少一层B沉积在层A的表面部分上,该沉积阶段通过真空沉积工艺进行。

    Lithium microbattery provided with a protective envelope, and method for producing one such microbattery
    3.
    发明申请
    Lithium microbattery provided with a protective envelope, and method for producing one such microbattery 审中-公开
    锂微电池提供保护性封套,以及生产这种微电池的方法

    公开(公告)号:US20070048604A1

    公开(公告)日:2007-03-01

    申请号:US10577242

    申请日:2004-11-04

    IPC分类号: H01M2/02 H01M2/04 H01M10/04

    摘要: A lithium microbattery comprises a substrate on which at least one stack is arranged successively comprising a cathode, an electrolyte containing lithium and an anode consisting of metallic lithium. A protective envelope comprising at least first and second distinct superposed layers covers the stack to protect the same against external contamination. The first layer, deposited on the whole of the anode, comprises at least one material that is chemically inert with regard to lithium, selected from the group consisting of a hydrogenated amorphous silicon carbide, a hydrogenated amorphous silicon oxycarbide, hydrogenated amorphous carbon, fluorinated amorphous carbon and hydrogenated amorphous silicon. The second layer comprises a material selected from the group consisting of a hydrogenated amorphous silicon carbonitride, a hydrogenated amorphous silicon nitride and a fluorinated amorphous carbon.

    摘要翻译: 锂微电池包括其上至少一个堆叠依次布置的衬底,其包括阴极,含锂的电解质和由金属锂组成的阳极。 包括至少第一和第二不同重叠层的保护性封套覆盖该堆叠以保护其免受外部污染。 沉积在整个阳极上的第一层包含至少一种关于锂化学惰性的材料,其选自氢化非晶碳化硅,氢化非晶硅碳氢化合物,氢化无定形碳,氟化非晶态 碳和氢化非晶硅。 第二层包括选自氢化非晶硅碳氮化物,氢化非晶氮化硅和氟化非晶碳的材料。

    Method for producing a lithium microbattery
    7.
    发明授权
    Method for producing a lithium microbattery 有权
    锂微电池的制造方法

    公开(公告)号:US07695531B2

    公开(公告)日:2010-04-13

    申请号:US10576511

    申请日:2004-11-04

    IPC分类号: H01M10/04

    摘要: During the production of a lithium microbattery, the electrolyte containing a lithiated compound is formed by successively depositing an electrolytic thin film, a first protective thin film that is chemically inert in relation to the lithium, and a first masking thin film on a substrate provided with current collectors and a cathode. A photolithography step is carried out on the first masking thin film in order to create a mask for selectively etching the first masking thin layer, and the first protective thin layer and the electrolytic thin film are then selectively etched in such a way as to form the electrolyte in the electrolytic thin film. This technique enables the electrolyte to be formed by photolithography and etching without causing any damage thereto.

    摘要翻译: 在制造锂微电池期间,含有锂化合物的电解质是通过依次沉积电解薄膜,相对于锂而化学惰性的第一保护薄膜和在基板上设置的第一掩模薄膜 集电器和阴极。 在第一掩模薄膜上进行光刻步骤,以便产生用于选择性地蚀刻第一掩模薄层的掩模,然后选择性地蚀刻第一保护薄层和电解薄膜,以形成 电解质在电解薄膜中。 这种技术可以通过光刻和蚀刻来形成电解质,而不会对其造成任何损害。

    Method for producing a lithium microbattery
    8.
    发明申请
    Method for producing a lithium microbattery 有权
    锂微电池的制造方法

    公开(公告)号:US20070067984A1

    公开(公告)日:2007-03-29

    申请号:US10576511

    申请日:2004-11-04

    IPC分类号: H01M10/04

    摘要: During the production of a lithium microbattery, the electrolyte containing a lithiated compound is formed by successively depositing an electrolytic thin film, a first protective thin film that is chemically inert in relation to the lithium, and a first masking thin film on a substrate provided with current collectors and a cathode. A photolithography step is carried out on the first masking thin film in order to create a mask for selectively etching the first masking thin layer, and the first protective thin layer and the electrolytic thin film are then selectively etched in such a way as to form the electrolyte in the electrolytic thin film. This technique enables the electrolyte to be formed by photolithography and etching without causing any damage thereto.

    摘要翻译: 在制造锂微电池期间,含有锂化合物的电解质是通过依次沉积电解薄膜,相对于锂而化学惰性的第一保护薄膜和在基板上设置的第一掩模薄膜 集电器和阴极。 在第一掩模薄膜上进行光刻步骤,以便产生用于选择性地蚀刻第一掩模薄层的掩模,然后选择性地蚀刻第一保护薄层和电解薄膜,以形成 电解质在电解薄膜中。 这种技术可以通过光刻和蚀刻来形成电解质,而不会对其造成任何损害。