TRANSPARENT CONDUCTIVE MATERIALS AND COATINGS, METHODS OF PRODUCTION AND USES THEREOF
    1.
    发明申请
    TRANSPARENT CONDUCTIVE MATERIALS AND COATINGS, METHODS OF PRODUCTION AND USES THEREOF 审中-公开
    透明导电材料和涂料,其生产方法及其用途

    公开(公告)号:US20080292979A1

    公开(公告)日:2008-11-27

    申请号:US11751977

    申请日:2007-05-22

    IPC分类号: G03G15/00 G03G5/00

    摘要: Transparent conductive materials, articles and films are described herein a) that are easily and efficiently produced, b) can be produced prior to application or in situ, c) are easily applied to surfaces and substrates or formed into articles, d) can be produced and used with materials and methods that are generally accepted by the flat panel display (FPD) industry, along with other industries that produce and utilize microelectronics, e) can be tailored to be photoimageable and patternable using accepted photolithography techniques, f) have superior optical properties and have superior film forming properties, including better adhesion to other adjacent layers, the ability to be laid down in very or ultra thin layers and the ability to remain transparent when laid down as thicker layers. Methods of producing and using these transparent conductive materials are also disclosed.

    摘要翻译: 透明导电材料,制品和膜在本文中描述a)容易且有效地制备,b)可以在施用之前或原位制备,c)易于施加到表面和基材上或形成制品,d)可以生产 并且与使用平板显示器(FPD)行业普遍接受的材料和方法一起使用,以及生产和利用微电子的其他行业,e)可以使用公认的光刻技术来定制成可光成像和可图案化,f)具有优异的光学 性能并且具有优异的成膜性能,包括对其它相邻层的更好的附着力,在非常或超薄层中放置的能力以及当铺设成更厚的层时保持透明的能力。 还公开了制造和使用这些透明导电材料的方法。

    Methods for simultaneously forming N-type and P-type doped regions using non-contact printing processes
    4.
    发明授权
    Methods for simultaneously forming N-type and P-type doped regions using non-contact printing processes 失效
    使用非接触印刷方法同时形成N型和P型掺杂区的方法

    公开(公告)号:US07951696B2

    公开(公告)日:2011-05-31

    申请号:US12241396

    申请日:2008-09-30

    IPC分类号: H01L21/22

    摘要: Methods for simultaneously forming doped regions of opposite conductivity using non-contact printing processes are provided. In one exemplary embodiment, a method comprises the steps of depositing a first liquid dopant comprising first conductivity-determining type dopant elements overlying a first region of a semiconductor material and depositing a second liquid dopant comprising second conductivity-determining type dopant elements overlying a second region of the semiconductor material. The first conductivity-determining type dopant elements and the second conductivity-determining type dopant elements are of opposite conductivity. At least a portion of the first conductivity-determining type dopant elements and at least a portion of the second conductivity-determining type dopant elements are simultaneously diffused into the first region and into the second region, respectively.

    摘要翻译: 提供了使用非接触印刷方法同时形成具有相反导电性的掺杂区域的方法。 在一个示例性实施例中,一种方法包括以下步骤:沉积第一液体掺杂剂,该第一液体掺杂剂包括覆盖在半导体材料的第一区域上的第一导电率确定型掺杂元素,并沉积包含第二区域的第二导电率确定型掺杂元素的第二液体掺杂剂 的半导体材料。 第一导电率确定型掺杂元素和第二导电率确定型掺杂元素具有相反的导电性。 第一导电率确定型掺杂剂元素的至少一部分和第二导电率确定型掺杂元素的至少一部分分别同时扩散到第一区域和第二区域中。

    METHODS FOR SIMULTANEOUSLY FORMING N-TYPE AND P-TYPE DOPED REGIONS USING NON-CONTACT PRINTING PROCESSES
    5.
    发明申请
    METHODS FOR SIMULTANEOUSLY FORMING N-TYPE AND P-TYPE DOPED REGIONS USING NON-CONTACT PRINTING PROCESSES 失效
    使用非接触式印刷工艺同时形成N型和P型掺杂区域的方法

    公开(公告)号:US20100081264A1

    公开(公告)日:2010-04-01

    申请号:US12241396

    申请日:2008-09-30

    IPC分类号: H01L21/22

    摘要: Methods for simultaneously forming doped regions of opposite conductivity using non-contact printing processes are provided. In one exemplary embodiment, a method comprises the steps of depositing a first liquid dopant comprising first conductivity-determining type dopant elements overlying a first region of a semiconductor material and depositing a second liquid dopant comprising second conductivity-determining type dopant elements overlying a second region of the semiconductor material. The first conductivity-determining type dopant elements and the second conductivity-determining type dopant elements are of opposite conductivity. At least a portion of the first conductivity-determining type dopant elements and at least a portion of the second conductivity-determining type dopant elements are simultaneously diffused into the first region and into the second region, respectively.

    摘要翻译: 提供了使用非接触印刷方法同时形成具有相反导电性的掺杂区域的方法。 在一个示例性实施例中,一种方法包括以下步骤:沉积第一液体掺杂剂,该第一液体掺杂剂包括覆盖在半导体材料的第一区域上的第一导电率确定型掺杂元素,并且沉积包含第二区域的第二导电性确定型掺杂元素的第二液体掺杂剂 的半导体材料。 第一导电率确定型掺杂元素和第二导电率确定型掺杂元素具有相反的导电性。 第一导电率确定型掺杂剂元素的至少一部分和第二导电率确定型掺杂元素的至少一部分分别同时扩散到第一区域和第二区域中。