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    • 13. 发明申请
    • MANUFACTURING PROCESS OF ELECTRODE
    • 电极制造工艺
    • US20090242507A1
    • 2009-10-01
    • US12408865
    • 2009-03-23
    • Nobuo AndoMitsuru Nagai
    • Nobuo AndoMitsuru Nagai
    • C23F1/00
    • H01M4/0404H01M4/0459H01M4/139H01M4/1395H01M4/70H01M10/052
    • A resist layer is formed over one surface of a current-collector material, while a resist layer having a predetermined pattern is formed on the other surface of the current-collector material. Through-holes are formed on the current-collector material through an etching process. An electrode slurry is applied onto the current-collector material formed with the through-holes without removing the resist layers. Specifically, since the through-holes are closed by the resist layer, the electrode slurry does not pass through the through-holes to leak out. Therefore, the current-collector material can be conveyed in the horizontal direction, whereby the productivity of an electrode can be enhanced. The resist layers are made of PVdF, and the resist layers are removed in a heating and drying step in which the PVdF is dissolved.
    • 在集电体材料的一个表面上形成抗蚀剂层,同时在集电体材料的另一个表面上形成具有预定图案的抗蚀剂层。 通过蚀刻工艺在集电体材料上形成通孔。 将电极浆料施加到形成有通孔的集电体材料上,而不去除抗蚀剂层。 具体地,由于通孔被抗蚀剂层封闭,所以电极浆料不通过通孔而泄漏。 因此,可以在水平方向上输送集电体材料,从而可以提高电极的生产率。 抗蚀剂层由PVdF制成,并且在PVdF溶解的加热和干燥步骤中除去抗蚀剂层。
    • 16. 发明授权
    • Lithium ion capacitor
    • 锂离子电容器
    • US07697264B2
    • 2010-04-13
    • US10576489
    • 2005-10-19
    • Shinichi TasakiNobuo AndoMitsuru NagaiAtsuro ShirakamiKohei MatsuiYukinori Hato
    • Shinichi TasakiNobuo AndoMitsuru NagaiAtsuro ShirakamiKohei MatsuiYukinori Hato
    • H01G9/00
    • H01M10/0585H01G11/06H01G11/58H01M4/0404H01M4/139H01M4/70H01M10/0587Y02E60/13Y02T10/7022
    • It is to provide a lithium ion capacitor having a high energy density, a high output density, a large capacity and high safety.A lithium ion capacitor comprising a positive electrode, a negative electrode and an aprotic organic solvent solution of a lithium salt as an electrolytic solution, wherein a positive electrode active material is a material capable of reversibly supporting lithium ions and anions, a negative electrode active material is a material capable of reversibly supporting lithium ions, and the potentials of the positive electrode and the negative electrode are at most 2.0 V after the positive electrode and the negative electrode are short-circuited, characterized in that the positive electrode and the negative electrode are respectively made by forming electrode layers by the positive electrode active material and the negative electrode active material on both sides of a positive electrode current collector and a negative electrode current collector each having pores penetrating from the front surface to the back surface, the capacitor has such a cell structure that the positive electrode and the negative electrode are wound or laminated, and the outermost portion of the wound or laminated electrodes is the negative electrode.
    • 提供具有高能量密度,高输出密度,大容量和高安全性的锂离子电容器。 一种锂离子电容器,其包含正极,负极和锂盐作为电解液的非质子有机溶剂溶液,其中正极活性物质是能够可逆地负载锂离子和阴离子的材料,负极活性物质 是能够可逆地负载锂离子的材料,在正极和负极短路之后,正极和负极的电位为2.0V以下,其特征在于正极和负极为 分别通过由正极活性物质和负极活性物质在正极集电体和负极集电体两侧形成电极层而形成的电极层,每个正极集电体和负极集电体均具有从前表面到后表面的孔,电容器具有这样的 正极和t的电池结构 负极被卷绕或层压,卷绕或层叠电极的最外部是负极。
    • 19. 发明授权
    • Manufacturing process of electrode
    • 电极制造工艺
    • US08404126B2
    • 2013-03-26
    • US12408865
    • 2009-03-23
    • Nobuo AndoMitsuru Nagai
    • Nobuo AndoMitsuru Nagai
    • H01B13/00H01G9/00B01J13/00
    • H01M4/0404H01M4/0459H01M4/139H01M4/1395H01M4/70H01M10/052
    • A resist layer is formed over one surface of a current-collector material, while a resist layer having a predetermined pattern is formed on the other surface of the current-collector material. Through-holes are formed on the current-collector material through an etching process. An electrode slurry is applied onto the current-collector material formed with the through-holes without removing the resist layers. Specifically, since the through-holes are closed by the resist layer, the electrode slurry does not pass through the through-holes to leak out. Therefore, the current-collector material can be conveyed in the horizontal direction, whereby the productivity of an electrode can be enhanced. The resist layers are made of PVdF, and the resist layers are removed in a heating and drying step in which the PVdF is dissolved.
    • 在集电体材料的一个表面上形成抗蚀剂层,同时在集电体材料的另一个表面上形成具有预定图案的抗蚀剂层。 通过蚀刻工艺在集电体材料上形成通孔。 将电极浆料施加到形成有通孔的集电体材料上,而不去除抗蚀剂层。 具体地,由于通孔被抗蚀剂层封闭,所以电极浆料不通过通孔而泄漏。 因此,可以在水平方向上输送集电体材料,从而可以提高电极的生产率。 抗蚀剂层由PVdF制成,并且在PVdF溶解的加热和干燥步骤中除去抗蚀剂层。
    • 20. 发明申请
    • Lithium Ion Capacitor
    • 锂离子电容器
    • US20090027831A1
    • 2009-01-29
    • US10576489
    • 2005-10-19
    • Shinichi TasakiNobuo AndoMitsuru NagaiAtsuro ShirakamiKohei MatsuiYukinori Hato
    • Shinichi TasakiNobuo AndoMitsuru NagaiAtsuro ShirakamiKohei MatsuiYukinori Hato
    • H01G9/15
    • H01M10/0585H01G11/06H01G11/58H01M4/0404H01M4/139H01M4/70H01M10/0587Y02E60/13Y02T10/7022
    • It is to provide a lithium ion capacitor having a high energy density, a high output density, a large capacity and high safety.A lithium ion capacitor comprising a positive electrode, a negative electrode and an aprotic organic solvent solution of a lithium salt as an electrolytic solution, wherein a positive electrode active material is a material capable of reversibly supporting lithium ions and anions, a negative electrode active material is a material capable of reversibly supporting lithium ions, and the potentials of the positive electrode and the negative electrode are at most 2.0 V after the positive electrode and the negative electrode are short-circuited, characterized in that the positive electrode and the negative electrode are respectively made by forming electrode layers by the positive electrode active material and the negative electrode active material on both sides of a positive electrode current collector and a negative electrode current collector each having pores penetrating from the front surface to the back surface, the capacitor has such a cell structure that the positive electrode and the negative electrode are wound or laminated, and the outermost portion of the wound or laminated electrodes is the negative electrode.
    • 提供具有高能量密度,高输出密度,大容量和高安全性的锂离子电容器。 一种锂离子电容器,其包含正极,负极和锂盐作为电解液的非质子有机溶剂溶液,其中正极活性物质是能够可逆地负载锂离子和阴离子的材料,负极活性物质 是能够可逆地负载锂离子的材料,在正极和负极短路之后,正极和负极的电位为2.0V以下,其特征在于正极和负极为 分别通过由正极活性物质和负极活性物质在正极集电体和负极集电体两侧形成电极层而形成的电极层,每个正极集电体和负极集电体均具有从前表面到后表面的孔,电容器具有这样的 正极和t的电池结构 负极被卷绕或层压,卷绕或层叠电极的最外部是负极。