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    • 3. 发明申请
    • METHOD FOR MANUFACTURING SECONDARY CELL AND SECONDARY CELL
    • 制造二次细胞和二次细胞的方法
    • US20110244287A1
    • 2011-10-06
    • US13131325
    • 2009-10-20
    • Jong Sung KimJoon Yong Park
    • Jong Sung KimJoon Yong Park
    • H01M10/36H01M10/04H01M10/0587
    • H01M10/0431H01M2/021H01M2/0212H01M2/0275H01M2/263H01M10/0409H01M10/052H01M10/0587Y10T29/49108Y10T29/4911Y10T29/49112
    • The present invention provides a method for manufacturing a secondary cell, comprising the steps of: disposing two sheets of separators (10) above and below a negative electrode plate (30), disposing a positive electrode plate (40) above the upper separator (10) or below the lower separator (10), and supplying elongated each one end of the separators (10), the negative electrode plate (30), and the positive electrode plate (40) to a mandrel (20) along the same transfer line; punching each vertical one end and/or the other end of the negative electrode plate (30) and the positive electrode plate (40), which intersects the transfer direction of the negative electrode plate (30) and the positive electrode plate (40) continuously supplied, to form a plurality of negative electrode tabs (32) on the negative electrode plate (30) by a predetermined gap (g) and form a plurality of positive electrode tabs (42) on the positive electrode plate (40) by a predetermined gap (g); winding the stacked body (S) of the separator/negative electrode plate/separator/positive electrode plate altogether by the mandrel (20) to produce an electrode assembly (50) having one side on which the plurality of negative electrode tabs (32) and the positive electrode tabs (42) are stacked; separating the mandrel (20) from the electrode assembly (50), and transferring the electrode assembly (50) by a holding unit; and cutting the separator/negative electrode plate/separator/positive electrode plate connected to the electrode assembly (50)
    • 本发明提供一种二次电池的制造方法,其特征在于,包括以下步骤:在负极板(30)的上下配置两片隔板(10),在上隔板(10)的上方配置正极板(40) )或下分隔件(10)下方,并且沿着相同的传输线将分离器(10),负极板(30)和正极板(40)的每个端部细长延伸到心轴(20) ; 冲压与负极板(30)和正极板(40)的传送方向连续的负极板(30)和正极板(40)的垂直一端和/或另一端 在负极板(30)上形成多个负电极片(32)预定的间隙(g),并在正电极板(40)上形成多个正极片(42) 间隙(g); 通过心轴(20)一起卷绕隔膜/负极板/隔板/正极板的层叠体(S),以制造电极组件(50),电极组件(50)具有一个侧面,多个负极片(32)和 正极片(42)被堆叠; 将心轴(20)与电极组件(50)分离,并通过保持单元传送电极组件(50); 并切断与电极组件(50)连接的分离器/负极板/分离器/正极板,
    • 5. 发明授权
    • Methods for forming banks and organic thin film transistors comprising such banks
    • 用于形成包括这种堤的堤和有机薄膜晶体管的方法
    • US08323875B2
    • 2012-12-04
    • US11633006
    • 2006-12-04
    • Bon Won KooJoon Yong ParkJung Seok HahnJoo Young KimKook Min HanSang Yoon Lee
    • Bon Won KooJoon Yong ParkJung Seok HahnJoo Young KimKook Min HanSang Yoon Lee
    • G30F7/00
    • H01L51/0512H01L27/283H01L51/0005H01L51/0558
    • Disclosed is a method for forming banks during the fabrication of electronic devices incorporating an organic semiconductor material that includes preparing an aqueous coating composition having at least a water-soluble polymer, a UV curing agent and a water-soluble fluorine compound. This coating composition is applied to a substrate, exposed using UV radiation and then developed using an aqueous developing composition to form the bank pattern. Because the coating composition can be developed using an aqueous composition rather than an organic solvent or solvent system, the method tends to preserve the integrity of other organic structures present on the substrate. Further, the incorporation of the fluorine compound in the aqueous solution provides a degree of control over the contact angles exhibited on the surface of the bank pattern and thereby can avoid or reduce subsequent surface treatments.
    • 公开了一种在制造包含有机半导体材料的电子器件的过程中形成堤的方法,包括制备至少具有水溶性聚合物,UV固化剂和水溶性氟化合物的水性涂料组合物。 将该涂料组合物施加到基材上,使用UV辐射曝光,然后使用水性显影组合物显影以形成图案。 因为涂料组合物可以使用水性组合物而不是有机溶剂或溶剂体系显影,所以该方法倾向于保持存在于基材上的其它有机结构的完整性。 此外,氟化合物在水溶液中的引入提供了对在堤形图案的表面上显示的接触角的控制程度,从而可以避免或减少随后的表面处理。
    • 7. 发明授权
    • Methods of fabricating organic thin film transistors
    • 制造有机薄膜晶体管的方法
    • US08476103B2
    • 2013-07-02
    • US13355940
    • 2012-01-23
    • Bon Won KooJoon Yong ParkJung Seok HahnJoo Young KimKook Min HanSang Yoon Lee
    • Bon Won KooJoon Yong ParkJung Seok HahnJoo Young KimKook Min HanSang Yoon Lee
    • H01L21/00
    • H01L51/0512H01L27/283H01L51/0005H01L51/0558
    • Disclosed is a method for forming banks during the fabrication of electronic devices incorporating an organic semiconductor material that includes preparing an aqueous coating composition having at least a water-soluble polymer, a UV curing agent and a water-soluble fluorine compound. This coating composition is applied to a substrate, exposed using UV radiation and then developed using an aqueous developing composition to form the bank pattern. Because the coating composition can be developed using an aqueous composition rather than an organic solvent or solvent system, the method tends to preserve the integrity of other organic structures present on the substrate. Further, the incorporation of the fluorine compound in the aqueous solution provides a degree of control over the contact angles exhibited on the surface of the bank pattern and thereby can avoid or reduce subsequent surface treatments.
    • 公开了一种在制造包含有机半导体材料的电子器件的过程中形成堤的方法,包括制备至少具有水溶性聚合物,UV固化剂和水溶性氟化合物的水性涂料组合物。 将该涂料组合物施加到基材上,使用UV辐射曝光,然后使用水性显影组合物显影以形成图案。 因为涂料组合物可以使用水性组合物而不是有机溶剂或溶剂体系显影,所以该方法倾向于保持存在于基材上的其它有机结构的完整性。 此外,氟化合物在水溶液中的引入提供了对在堤形图案的表面上显示的接触角的控制程度,从而可以避免或减少随后的表面处理。
    • 10. 发明申请
    • METHODS OF FABRICATING ORGANIC THIN FILM TRANSISTORS
    • 制造有机薄膜晶体管的方法
    • US20120122275A1
    • 2012-05-17
    • US13355940
    • 2012-01-23
    • Bon Won KOOJoon Yong ParkJung Seok HahnJoo Young KimKook Min HanSang Yoon Lee
    • Bon Won KOOJoon Yong ParkJung Seok HahnJoo Young KimKook Min HanSang Yoon Lee
    • H01L51/05
    • H01L51/0512H01L27/283H01L51/0005H01L51/0558
    • Disclosed is a method for forming banks during the fabrication of electronic devices incorporating an organic semiconductor material that includes preparing an aqueous coating composition having at least a water-soluble polymer, a UV curing agent and a water-soluble fluorine compound. This coating composition is applied to a substrate, exposed using UV radiation and then developed using an aqueous developing composition to form the bank pattern. Because the coating composition can be developed using an aqueous composition rather than an organic solvent or solvent system, the method tends to preserve the integrity of other organic structures present on the substrate. Further, the incorporation of the fluorine compound in the aqueous solution provides a degree of control over the contact angles exhibited on the surface of the bank pattern and thereby can avoid or reduce subsequent surface treatments.
    • 公开了一种在制造包含有机半导体材料的电子器件的过程中形成堤的方法,包括制备至少具有水溶性聚合物,UV固化剂和水溶性氟化合物的水性涂料组合物。 将该涂料组合物施加到基材上,使用UV辐射曝光,然后使用水性显影组合物显影以形成图案。 因为涂料组合物可以使用水性组合物而不是有机溶剂或溶剂体系显影,所以该方法倾向于保持存在于基材上的其它有机结构的完整性。 此外,氟化合物在水溶液中的引入提供了对在堤形图案的表面上显示的接触角的控制程度,从而可以避免或减少随后的表面处理。