IP Library › Granted Patent US 9,418,796
Granted Patent B2
US 9,418,796 · App. 14/000,599 · Granted Aug 16, 2016

Electrode foil, current collector, electrode, and electric energy storage element using same

Inventors: Mitsuo Yoshimura (Uenohara, JP); Koji Yoshioka (Koshu, JP)
Assignee: Japan Capacitor Industrial Co., Ltd.
H01G11/32H01G9/0425H01G9/15H01G11/06H01G11/28H01G11/70H01M4/661H01M4/663H01M4/666H01M4/667H01G11/34H01G11/36H01G11/50H01M10/0525Y02E60/13Y10T428/24355Y10T428/31678
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Quick Facts
Patent No.
US 9,418,796
App. No.
14/000,599
Granted
Aug 16, 2016
Kind
B2
Abstract

A cathode foil for a solid electrolytic capacitor is designed to increase capacitance, reduce ESR and leakage current, enhance heat resistance, and reduce production costs, while enhancing a power density, realizing rapid charging-discharging, and improving a life property, in an electric energy storage element such as a secondary battery, an electric double layer capacitor and a hybrid capacitor. A cathode foil or a current collector may include a metal foil, a metal layer, a mixed layer containing carbon and a substance composing the metal layer in a mixed state, and a carbon layer consisting substantially of carbon, each formed on the metal foil. The mixed layer is configured to have a composition changing from a state containing substantially only the substance composing the metal layer to a state containing substantially only carbon, in a direction from the metal layer to the carbon layer.

Claims (27)

1. A cathode foil for use in a solid electrolytic capacitor having a capacitor element which comprises an anode foil, a cathode foil, a separator provided between the anode and cathode foils, and a solid electrically conductive polymer layer disposed between the anode and cathode foils, wherein the cathode foil comprises:

an aluminum foil having a non-roughened surface;

a metal layer disposed on the aluminum foil and consisting of Ti or Al;

a mixed layer disposed on the metal layer and containing graphite-like carbon and the Ti or Al in a mixed state wherein the graphite-like carbon is carbon having at least an amorphous structure in which a diamond bond as a carbon-carbon bond based on a sp 3 hybridized orbital and a graphite bond as a carbon-carbon bond based on a sp 2 hybridized orbital exist in a mixed state, wherein a rate of the graphite bond is over one-half; and

a carbon layer disposed on the mixed layer and consisting of graphite-like carbon,

wherein the mixed layer is configured to have a composition which changes from a state containing only the Ti or Al to a state containing only the graphite-like carbon, in a direction from the metal layer to the carbon layer, and

wherein the state containing only the Ti or Al is a carbon-free state.

2. A current collector for an electrode, comprising:

a first electrically conductive layer containing a metal, the first electrically conductive layer disposed on a substrate containing a metal,

a mixed layer containing graphite-like carbon and a substance composing the metal of the first electrically conductive layer in a mixed state, wherein the graphite-like carbon is carbon having at least an amorphous structure in which a diamond bond as a carbon-carbon bond based on a sp 3 hybridized orbital and a graphite bond as a carbon-carbon bond based on a sp 2 hybridized orbital exist in a mixed state, wherein a rate of the graphite bond is over one-half, and

a second electrically conductive layer consisting of graphite-like carbon,

wherein the mixed layer is configured to have a composition which changes from a state containing only the metal of the substance to a state containing only graphite-like carbon, in a direction from the first electrically conductive layer containing a metal to the second electrically conductive layer, and

wherein the state containing only the metal of the substance is a carbon-free state.

3. The current collector as defined in claim 2 , wherein the first electrically conductive layer containing a metal contains at least one selected from the group consisting of Ta, Ti, Cr, Al, Nb, V, W, Hf, Cu, and nitrides of those metals.

4. The current collector as defined in claim 2 , wherein the substrate containing a metal is a metal foil consisting of at least one selected from the group consisting of aluminum or aluminum alloy, Ti, Cu, Ni, Hf, and stainless steel.

5. The current collector as defined in claim 2 , wherein the substrate containing a metal has a roughened surface.

6. A positive electrode for a non-aqueous electrolytic secondary battery, the positive electrode comprising an electrode layer on the current collector as defined in claim 2 , the electrode layer comprising: an active substance including a transition metal oxide or transition metal phosphate compound containing an alkali metal or an alkali earth metal; an electrically conductive assistant; and a binder.

7. A negative electrode for a non-aqueous electrolytic secondary battery, the negative electrode comprising an electrode layer on the current collector as defined in claim 2 , the electrode layer comprising: an active substance including at least one selected from the group consisting of a carbon material capable of occluding and releasing an alkali metal ion or alkali earth metal ion, Sn, Si or silicon oxide, S or sulfide, and titanium oxide; an electrically conductive assistant; and a binder.

8. A non-aqueous electrolytic secondary battery comprising the positive electrode as defined in claim 6 .

9. An electrode for a non-aqueous electrolytic electric double layer capacitor, the electrode comprising an electrode layer on the current collector as defined in claim 2 , the electrode layer comprising: an active substance including activated carbon or carbon nanotube; an electrically conductive assistant; and a binder.

10. A non-aqueous electrolytic electric double layer capacitor comprising a positive electrode and a negative electrode, wherein the electrode as defined in claim 9 is used as at least one of the positive and negative electrodes.

11. A positive electrode for a non-aqueous electrolytic hybrid capacitor, the positive electrode comprising an electrode layer on the current collector as defined in claim 2 , the electrode layer comprising: an active substance including activated carbon or carbon nanotube; an electrically conductive assistant; and a binder.

12. A negative electrode for a non-aqueous electrolytic hybrid capacitor, the negative electrode comprising an electrode layer on the current collector as defined in claim 2 , the electrode layer comprising: an active substance including at least one selected from the group consisting of a carbon material capable of occluding and releasing an alkali metal ion or alkali earth metal ion, Sn, Si or silicon oxide, S or sulfide, and titanium oxide; an electrically conductive assistant; and a binder.

13. A non-aqueous electrolytic hybrid capacitor comprising the positive electrode as defined in claim 11 .

14. A non-aqueous electrolytic secondary battery comprising the negative electrode as defined in claim 7 .

15. A non-aqueous electrolytic hybrid capacitor comprising the negative electrode as defined in claim 12 .

16. The current collector as defined in claim 2 , wherein the graphite-like carbon includes a phase having a crystal structure partially composed of a graphite structure.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 22, 2013
From: YOSHIMURA, MITSUO; YOSHIOKA, KOJI
To: JAPAN CAPACITOR INDUSTRIAL CO., LTD.
Reel/Frame 031066/0343 →
Priority Claims (2)
JP 2011-034803 · Feb 21, 2011 · national
JP 2012-026631 · Feb 9, 2012 · national
Continuity (1)
Related Publication 20130330617A1 · Dec 12, 2013