Electrode and secondary battery
An electrode includes a base material and an active material layer. The active material layer is disposed on a base material surface. One or more grooves are formed on an active material layer surface. The one or more grooves linearly extend along the surface of the active material layer. In a plan view, each of the one or more grooves includes an inlet region, an intermediate region, and an outlet region. Each of the inlet region and the outlet regions is configured such that a first pressure loss occurring when a fluid flows in a forward direction is smaller than a second pressure loss occurring when the fluid flows in a backward direction.
1 . An electrode comprising:
a base material; and
an active material layer, wherein
the active material layer is disposed on a surface of the base material,
the active material layer has one or more grooves on a surface of the active material layer,
the one or more grooves linearly extend along the surface of the active material layer,
each of the one or more grooves comprises a plurality of cross-sectional area changing portions extending from a side wall of the one or more grooves,
in a plan view, each of the one or more grooves comprising a first region, a second region, and a third region, the first region comprises a first opening portion at a periphery of the active material layer,
the third region comprises a second opening portion at the periphery of the active material layer,
the second region is disposed between the first region and the third region,
the second region connects the first region with the third region,
each of the first region and the third region is configured such that a first pressure loss occurring when a fluid flows in a forward direction is smaller than a second pressure loss occurring when the fluid flows in a backward direction,
the forward direction represents a direction from the first region to the third region,
the backward direction represents a direction from the third region to the first region,
a cross-section of the one or more grooves gradually decreases in the forward direction due to the plurality of cross-sectional area changing portions.
2 . The electrode according to claim 1 , wherein at least one of the first region and the third region is configured such that streams of the fluid converge when the fluid flows in the forward direction and diverge when the fluid flows in the backward direction.
3 . The electrode according to claim 1 , wherein the plurality of cross-sectional area changing portions are arranged in a row in the forward direction.
4 . The electrode according to claim 1 , wherein in each cross-sectional area changing portion of the plurality of cross-sectional area changing portions, the fluid converges when flowing in the forward direction and diverges when flowing in the backward direction.
5 . A secondary battery comprising:
an electrode having a base material and an active material layer; and
an electrolytic solution, wherein
the active material layer is disposed on a surface of the base material,
the active material layer has one or more grooves on a surface of the active material layer,
the one or more grooves linearly extend along the surface of the active material layer,
each of the one or more grooves comprises a plurality of cross-sectional area changing portions arranged along the groove and extending from a side wall of the groove,
in a plan view, each of the one or more grooves includes a first region, a second region, and a third region,
the first region includes a first opening portion at a periphery of the active material layer,
the third region includes a second opening portion at the periphery of the active material layer,
the second region is disposed between the first region and the third region,
the second region connects the first region with the third region,
each of the first region and the third region is configured such that a first pressure loss occurring when a fluid flows in a forward direction is smaller than a second pressure loss occurring when the fluid flows in a backward direction,
the forward direction represents a direction from the first region to the third region, and
the backward direction represents a direction from the third region to the first region,
a cross-section of each of the one or more grooves gradually decreases in the forward direction due to the plurality of cross-sectional area changing portions.
6 . An electrode comprising:
a base material; and
an active material layer, wherein
the active material layer is disposed on a surface of the base material,
the active material layer has one or more grooves on a surface of the active material layer,
the one or more grooves linearly extend along the surface of the active material layer,
in a plan view, each of the one or more grooves comprising a first region, a second region, and a third region,
the first region comprises a first opening portion at a periphery of the active material layer,
the third region comprises a second opening portion at the periphery of the active material layer,
the second region is disposed between the first region and the third region,
the second region connects the first region with the third region,
each of the first region and the third region is configured such that a first pressure loss occurring when a fluid flows in a forward direction is smaller than a second pressure loss occurring when the fluid flows in a backward direction,
the forward direction represents a direction from the first region to the third region,
the backward direction represents a direction from the third region to the first region,
at least one of the first region and the third region comprises a main flow channel and a plurality of loop flow channels,
each loop flow channel of the plurality of loop flow channels diverges from the main flow channel at a first end and converges with the main flow channel at a second end.
7 . The electrode according to claim 6 , wherein at least one of the first region and the third region is configured such that streams of the fluid converge when the fluid flows in the forward direction and diverge when the fluid flows in the backward direction.