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    • 21. 发明授权
    • Forming photovoltaic conductive features from multiple inks
    • 从多种油墨形成光电导电特性
    • US08372472B2
    • 2013-02-12
    • US13349732
    • 2012-01-13
    • Mark J. Hampden-SmithMark H. Kowalski
    • Mark J. Hampden-SmithMark H. Kowalski
    • B05D5/12B05D5/00B05D3/06H01L31/00H01L21/00H01B13/00
    • H01L31/022425H01L31/1868Y02E10/50Y02P70/521
    • Photovoltaic conductive features and processes for forming photovoltaic conductive features are described. The process comprises (a) providing a substrate comprising a passivation layer disposed on a silicon layer; (b) depositing a surface modifying material onto at least a portion of the passivation layer; (c) depositing a composition comprising at least one of metallic nanoparticles comprising a metal or a metal precursor to the metal onto at least a portion of the substrate; and (d) heating the composition such that it forms at least a portion of a photovoltaic conductive feature in electrical contact with the silicon layer, wherein at least one of the composition or the surface modifying material etches a region of the passivation layer. When the surface modifying material is a UV-curable material, the process comprises the additional step of curing the UV-curable material.
    • 描述了用于形成光伏导电特征的光伏导电特征和工艺。 该方法包括(a)提供包括设置在硅层上的钝化层的衬底; (b)将表面改性材料沉积在所述钝化层的至少一部分上; (c)将包含至少一种包含金属或金属前体的金属纳米颗粒的组合物沉积到所述基底的至少一部分上; 和(d)加热组合物使得其形成与硅层电接触的光伏导电特征的至少一部分,其中组合物或表面改性材料中的至少一种蚀刻钝化层的区域。 当表面改性材料是可UV固化的材料时,该方法包括固化可UV固化的材料的附加步骤。
    • 22. 发明申请
    • FORMING PHOTOVOLTAIC CONDUCTIVE FEATURES FROM MULTIPLE INKS
    • 形成来自多个墨水的光伏导电特征
    • US20120115275A1
    • 2012-05-10
    • US13349732
    • 2012-01-13
    • Mark J. Hampden-SmithMark H. Kowalski
    • Mark J. Hampden-SmithMark H. Kowalski
    • H01L31/18
    • H01L31/022425H01L31/1868Y02E10/50Y02P70/521
    • Photovoltaic conductive features and processes for forming photovoltaic conductive features are described. The process comprises (a) providing a substrate comprising a passivation layer disposed on a silicon layer; (b) depositing a surface modifying material onto at least a portion of the passivation layer; (c) depositing a composition comprising at least one of metallic nanoparticles comprising a metal or a metal precursor to the metal onto at least a portion of the substrate; and (d) heating the composition such that it forms at least a portion of a photovoltaic conductive feature in electrical contact with the silicon layer, wherein at least one of the composition or the surface modifying material etches a region of the passivation layer. When the surface modifying material is a UV-curable material, the process comprises the additional step of curing the UV-curable material.
    • 描述了用于形成光伏导电特征的光伏导电特征和工艺。 该方法包括(a)提供包括设置在硅层上的钝化层的衬底; (b)将表面改性材料沉积在所述钝化层的至少一部分上; (c)将包含至少一种包含金属或金属前体的金属纳米颗粒的组合物沉积到所述基底的至少一部分上; 和(d)加热组合物使得其形成与硅层电接触的光伏导电特征的至少一部分,其中组合物或表面改性材料中的至少一种蚀刻钝化层的区域。 当表面改性材料是可UV固化的材料时,该方法包括固化可UV固化的材料的附加步骤。
    • 23. 发明授权
    • Processes for forming photovoltaic conductive features from multiple inks
    • 用于从多种油墨形成光电导电特征的方法
    • US08101231B2
    • 2012-01-24
    • US11952580
    • 2007-12-07
    • Mark J. Hampden-SmithMark H. Kowalski
    • Mark J. Hampden-SmithMark H. Kowalski
    • B05D5/12B05D3/00B05D3/02H01B13/00
    • H01L31/022425H01L31/1868Y02E10/50Y02P70/521
    • Photovoltaic conductive features and processes for forming photovoltaic conductive features are described. The process comprises (a) providing a substrate comprising a passivation layer disposed on a silicon layer; (b) depositing a surface modifying material onto at least a portion of the passivation layer; (c) depositing a composition comprising at least one of metallic nanoparticles comprising a metal or a metal precursor to the metal onto at least a portion of the substrate; and (d) heating the composition such that it forms at least a portion of a photovoltaic conductive feature in electrical contact with the silicon layer, wherein at least one of the composition or the surface modifying material etches a region of the passivation layer. When the surface modifying material is a UV-curable material, the process comprises the additional step of curing the UV-curable material.
    • 描述了用于形成光伏导电特征的光伏导电特征和工艺。 该方法包括(a)提供包括设置在硅层上的钝化层的衬底; (b)将表面改性材料沉积在所述钝化层的至少一部分上; (c)将包含至少一种包含金属或金属前体的金属纳米颗粒的组合物沉积到所述基底的至少一部分上; 和(d)加热组合物使得其形成与硅层电接触的光伏导电特征的至少一部分,其中组合物或表面改性材料中的至少一种蚀刻钝化层的区域。 当表面改性材料是可UV固化的材料时,该方法包括固化可UV固化的材料的附加步骤。
    • 26. 发明授权
    • Method for applying clear, vivid, and water-fast printed images to a
susbtrate
    • 将清晰,鲜明和水分快速的打印图像应用于遮瑕膏的方法
    • US6090749A
    • 2000-07-18
    • US829744
    • 1997-03-31
    • Mark H. Kowalski
    • Mark H. Kowalski
    • B41J2/04B41J2/14B41J2/175B41M7/00B41J2/32B41M5/035B41M5/20
    • B41J2/17526B41J2/14016B41M7/009
    • A method for producing a clear, vivid and water-fast printed image on a substrate. An ink is used which contains a sublimable dye diffusion thermal transfer coloring agent. The substrate includes a backing layer and an ink absorbent layer on the backing layer. The backing layer is designed to receive the coloring agent therein after sublimation of the coloring agent. The ink is initially delivered to the ink-absorbent layer. The substrate is then heated to cause sublimation of the coloring agent and diffusion of the sublimed coloring agent into the backing layer. Pressure may also be applied during the heating process. In addition, the ink can be retained within an ink cartridge in a printer unit, with the cartridge having at least one ink ejector. Heating of the substrate may then be accomplished by a heating member in the printer unit which contacts the substrate.
    • 一种在基板上产生清晰,鲜明和水快的印刷图像的方法。 使用含有可升华的染料扩散热转印着色剂的油墨。 衬底包括背衬层和背衬层上的墨吸收层。 背衬层设计成在着色剂升华之后接收其中的着色剂。 墨水最初被传送到吸墨层。 然后加热底物引起着色剂的升华和升华的着色剂扩散到背衬层中。 也可以在加热过程中施加压力。 此外,墨水可以保持在打印机单元中的墨盒内,墨盒具有至少一个墨水喷射器。 然后可以通过接触基板的打印机单元中的加热构件来实现基板的加热。