Non-aqueous electrolyte secondary battery
A non-aqueous electrolyte secondary battery comprising a negative electrode having a current collector provided with convex portions and concave portions on both surfaces, a first columnar body formed in a tilting orientation on the convex portion on one of the surfaces of the current collector, and a second columnar body formed in a tilting orientation on the convex portion on the other surface, a positive electrode having a positive electrode current collector provided with a positive electrode mixture layer containing a positive electrode active material capable of reversibly inserting and extracting lithium ions on both surfaces, and a separator interposed between the positive electrode and the negative electrode in a confronting manner, wherein the first columnar body and the second columnar body on the negative electrode are tilted to an orthogonal direction of a winding direction of the current collector.
1. A non-aqueous electrolyte secondary battery comprising:
a negative electrode having a current collector provided with convex portions and concave portions on both surfaces thereof, a first columnar body formed in a tilting orientation on the convex portion on one of the surfaces of the current collector, and a second columnar body formed in a tilting orientation on the convex portion on the other surface of the current collector;
a positive electrode having a positive electrode current collector provided on both surfaces thereof with a positive electrode mixture layer containing a positive electrode active material capable of inserting and extracting lithium ions reversibly; and
a separator interposed between the positive electrode and the negative electrode in a confronting manner,
wherein the first columnar body and the second columnar body on the negative electrode are tilted to a direction orthogonal to a winding direction of the current collector.
2. The non-aqueous electrolyte secondary battery of claim 1 , wherein the first columnar body and the second columnar body have a structure comprising n-stages (where n≧2) of columnar body portions overlaid one another; and
the columnar body portions of an odd-number stage and an even-number stage are tilted to different orientations.
3. The non-aqueous electrolyte secondary battery of claim 1 , wherein a content ratio of an element composing the first columnar body and the second columnar body is varied in a width direction along a tilting orientation.
4. The non-aqueous electrolyte secondary battery of claim 2 , wherein a content ratio of an element composing the columnar body portions is varied in a width direction along a tilting orientation, and directions of the variation are different between the odd-number stage and the even-number stage of the columnar body portions.
5. The non-aqueous electrolyte secondary battery of claim 3 , wherein an acute side angle formed at an intersection between a center line in the tilting orientation of the first and the second columnar bodies and a center line in the direction of thickness of the current collector becomes greater at least during a charging state than during a discharging state.
6. The non-aqueous electrolyte secondary battery of claim 4 , wherein an acute side angle formed at an intersection between a center line in the tilting orientation of the columnar body portion and a center line in the direction of thickness of the current collector becomes greater at least during a charging state than during a discharging state.
7. The non-aqueous electrolyte secondary battery of claim 1 , wherein the first columnar body and the second columnar body include a negative electrode active material having at least a property of reversibly inserting and extracting lithium ions and a theoretical capacity density exceeding 833 mAh/cm 3 .
8. The non-aqueous electrolyte secondary battery of claim 7 , wherein the negative electrode active material includes a material containing at least silicon, as expressed by the formula of SiOx.
9. The non-aqueous electrolyte secondary battery of claim 8 , wherein a value of x of the material expressed by the formula of SiOx containing silicon is increased continually from one side forming an acute angle at an intersection between a center line in the tilting orientation of the first and the second columnar bodies and a center line in the direction of thickness of the current collector toward another side forming an obtuse angle.