CONDUCTIVE PASTE FOR USE IN PHOTOVOLTAIC CELL AND METHOD OF PRODUCING PHOTOVOLTAIC CELL ELEMENT USING THE SAME
    1.
    发明申请
    CONDUCTIVE PASTE FOR USE IN PHOTOVOLTAIC CELL AND METHOD OF PRODUCING PHOTOVOLTAIC CELL ELEMENT USING THE SAME 有权
    用于光伏电池的导电胶浆和使用其制造光伏电池元件的方法

    公开(公告)号:US20130203206A1

    公开(公告)日:2013-08-08

    申请号:US13824879

    申请日:2011-09-30

    IPC分类号: H01L31/0224

    摘要: A conductive paste for a photovoltaic cell and a method for producing the photovoltaic cell are disclosed. The conductive paste includes a silver powder, glass frit and a sintering inhibitor that suppresses sintering of the silver powder. The sintering inhibitor contains at least one substance selected from aluminum oxide, silicon oxide and silicon carbide. The method includes forming a first anti-reflective layer on a first region of a main surface of a semiconductor substrate; forming a second anti-reflection layer on a second region of the main surface which is different from the first region; coating the electrically conductive paste onto the second anti-reflective layer on the second anti-reflection layer; and forming a surface electrode in the second region by reacting the second anti-reflection layer with the electrically conductive paste at an elevated temperature.

    摘要翻译: 公开了一种用于光伏电池的导电膏及其制造方法。 导电糊料包括银粉,玻璃料和抑制银粉烧结的烧结抑制剂。 烧结抑制剂含有选自氧化铝,氧化硅和碳化硅中的至少一种物质。 该方法包括在半导体衬底的主表面的第一区域上形成第一抗反射层; 在与所述第一区域不同的所述主表面的第二区域上形成第二抗反射层; 将导电浆料涂覆到第二抗反射层上的第二抗反射层上; 以及通过使所述第二抗反射层与所述导电膏在升高的温度下反应而在所述第二区域中形成表面电极。

    Conductive paste for photovoltaic cell and method of producing photovoltaic cell element using the same
    2.
    发明授权
    Conductive paste for photovoltaic cell and method of producing photovoltaic cell element using the same 有权
    用于光伏电池的导电浆料及使用其的生产光伏电池元件的方法

    公开(公告)号:US08815637B2

    公开(公告)日:2014-08-26

    申请号:US13824879

    申请日:2011-09-30

    IPC分类号: H01L21/00

    摘要: A conductive paste for a photovoltaic cell and a method for producing the photovoltaic cell are disclosed. The conductive paste includes a silver powder, glass frit and a sintering inhibitor that suppresses sintering of the silver powder. The sintering inhibitor contains at least one substance selected from aluminum oxide, silicon oxide and silicon carbide. The method includes forming a first anti-reflective layer on a first region of a main surface of a semiconductor substrate; forming a second anti-reflection layer on a second region of the main surface which is different from the first region; coating the electrically conductive paste onto the second anti-reflective layer on the second anti-reflection layer; and forming a surface electrode in the second region by reacting the second anti-reflection layer with the electrically conductive paste at an elevated temperature.

    摘要翻译: 公开了一种用于光伏电池的导电膏及其制造方法。 导电糊料包括银粉,玻璃料和抑制银粉烧结的烧结抑制剂。 烧结抑制剂含有选自氧化铝,氧化硅和碳化硅中的至少一种物质。 该方法包括在半导体衬底的主表面的第一区域上形成第一抗反射层; 在与所述第一区域不同的所述主表面的第二区域上形成第二抗反射层; 将导电浆料涂覆到第二抗反射层上的第二抗反射层上; 以及通过使所述第二抗反射层与所述导电膏在升高的温度下反应而在所述第二区域中形成表面电极。

    Sintered aluminum nitride
    3.
    发明授权
    Sintered aluminum nitride 失效
    烧结氮化铝

    公开(公告)号:US5874378A

    公开(公告)日:1999-02-23

    申请号:US881110

    申请日:1997-06-23

    IPC分类号: C04B35/581 H01L23/14 H05K1/03

    CPC分类号: C04B35/581 H05K1/0306

    摘要: A sintered aluminum nitride contains rare earth elements (RE) in amounts of from 3 to 10% by weight in terms of RE.sub.2 O.sub.3, alkaline earth elements (R) in amounts of from 0.3 to 3.0% by weight in terms of RO, and silicon atoms in an amount of from 0.3 to 1.0% by weight in terms of SiO.sub.2, the grain boundaries of AlN crystals being chiefly a YAG type crystalline phase. The sintered product is obtained by firing at a temperature as low as 1700.degree. C. or lower, has a thermal conductivity of not smaller than 60 W/m.cndot.K, loses weight in an amount of not more than 10 mg/cm.sup.2 when it is left to stand in a 4N NaOH aqueous solution maintained at 70.degree. C. for one hour, and exhibits excellent resistance against the alkalis.

    摘要翻译: 氮化铝烧结体含有稀土元素(RE),以RE 2 O 3为3〜10重量%,RO为0.3〜3.0重量%的碱土金属元素(R),硅原子 以SiO 2换算为0.3〜1.0重量%,AlN晶体的晶界主要为YAG型结晶相。 通过在低于1700℃或更低的温度下焙烧获得烧结产品,其热导率不低于60W / mK,当剩余时,其重量不超过10mg / cm 2 在保持在70℃的4N NaOH水溶液中静置1小时,并显示出优异的耐碱性。