Separator for secondary battery, manufacturing method thereof, method for manufacturing secondary battery comprising the separator and secondary battery manufactured by the method
US-12183949-B2 · Dec 31, 2024 · US
US2019252728A1 · US · A1
| Field | Value |
|---|---|
| Publication number | US-2019252728-A1 |
| Application number | US-201916394350-A |
| Country | US |
| Kind code | A1 |
| Filing date | Apr 25, 2019 |
| Priority date | Nov 8, 2016 |
| Publication date | Aug 15, 2019 |
| Grant date | — |
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A solid battery including at least one first laminate body in which a first electrolyte layer, a first positive electrode layer, a first current collecting layer, and a second positive electrode layer are laminated in this order; at least one second laminate body in which a second electrolyte layer, a first negative electrode layer, a second current collecting layer, and a second negative electrode layer are laminated in this order; a first insulating layer connected to at least part of a side surface portion of the first laminate body; and a second insulating layer connected to at least part of a side surface portion of the second laminate body. Each of the first current collecting layer and the second current collecting layer has ionic conductivity of 10−7 S/cm or lower, and each of the first insulating layer and the second insulating layer has ionic conductivity of 10−7 S/cm or lower.
Opening claim text (preview).
1 . A solid battery, comprising: at least one first laminate body in which a first electrolyte layer, a first positive electrode layer, a first current collecting layer, and a second positive electrode layer are laminated in this order; at least one second laminate body in which a second electrolyte layer, a first negative electrode layer, a second current collecting layer, and a second negative electrode layer are laminated in this order; a first insulating layer connected to at least part of a side surface portion of the at least one first laminate body; and a second insulating layer connected to at least part of a side surface portion of the at least one second laminate body, wherein the first laminate body and the second laminate body are laminated together along a main plane of the first electrolyte layer where the first positive electrode layer is not laminated thereto and a main plane of the second negative electrode layer where the second current collecting layer is not laminated thereto, or along a main plane of the second electrolyte layer where the first negative electrode layer is not laminated thereto and a main plane of the second positive electrode layer where the first current collecting layer is not laminated thereto, each of the first current collecting layer and the second current collecting layer has ionic conductivity of 10 −7 S/cm or lower, and each of the first insulating layer and the second insulating layer has ionic conductivity of 10 −7 S/cm or lower. 2 . The solid battery according to claim 1 , wherein each of the first insulating layer and the second insulating layer has ionic conductivity of 10 −8 S/cm or lower. 3 . The solid battery according to claim 1 , further comprising: a first outer layer; and a second outer layer, wherein the first outer layer is on an uppermost part of the solid battery, and the second outer layer is on a lowermost part of the solid battery. 4 . A battery pack, comprising: the solid battery according to claim 1 ; a control unit that controls a use state of the solid battery; and a switch unit that switches the use state of the solid battery according to an instruction of the control unit. 5 . A vehicle, comprising: the solid battery according to claim 1 ; a driving force conversion device for receiving supply of electric power from the solid battery and converting the electric power into a driving force of a vehicle; a driving unit for driving in accordance with the driving force; and a vehicle control device for controlling the driving force. 6 . A power storage system, comprising: a power storage device including the solid battery according to claim 1 ; a power consumption device to which power from the solid battery is supplied; a control device for controlling the supply of the power from the solid battery to the power consumption device; and a power generation device for charging the solid battery. 7 . A power tool, comprising: the solid battery according to claim 1 ; and a movable portion to which electric power is supplied from the solid battery. 8 . Electronic equipment comprising: the solid battery according to claim 1 , wherein the electronic equipment receives supply of electric power from the solid battery. 9 . A solid battery, comprising: at least one first laminate body in which a first electrolyte layer, a first positive electrode layer, a first current collecting layer, and a second positive electrode layer are laminated in this order; at least one third laminate body in which a third electrolyte layer and a third negative electrode layer are laminated; a first insulating layer connected to at least part of a side surface portion of the at least one first laminate body; and a third insulating layer connected to at least part of a side surface portion of the at least one third laminate body, wherein the first laminate body and the third laminate body are laminated together along a main plane of the first electrolyte layer where the first positive electrode layer is not laminated thereto and a main plane of the third negative electrode layer where the third electrolyte layer is not laminated thereto, or along a main plane of the third electrolyte layer where the third negative electrode layer is not laminated thereto and a main plane of the second positive electrode layer where the first current collecting layer is not laminated thereto, the first current collecting layer has ionic conductivity of 10 −7 S/cm or lower, and each of the first insulating layer and the third insulating layer has ionic conductivity of 10 −7 S/cm or lower. 10 . The solid battery according to claim 9 , wherein each of the first insulating layer and the third insulating layer has ionic conductivity of 10 −8 S/cm or lower. 11 . The solid battery according to claim 9 , further comprising: a first outer layer; and a second outer layer, wherein the first outer layer is on an uppermost part of the solid battery, and the second outer layer is on a lowermost part of the solid battery. 12 . A battery pack, comprising: the solid battery according to claim 9 ; a control unit that controls a use state of the solid battery; and a switch unit that switches the use state of the solid battery according to an instruction of the control unit. 13 . A vehicle, comprising: the solid battery according to claim 9 ; a driving force conversion device for receiving supply of electric power from the solid battery and converting the electric power into a driving force of a vehicle; a driving unit for driving in accordance with the driving force; and a vehicle control device for controlling the driving force. 14 . A power storage system, comprising: a power storage device including the solid battery according to claim 9 ; a power consumption device to which power from the solid battery is supplied; a control device for controlling the supply of the power from the solid battery to the power consumption device; and a power generation device for charging the solid battery. 15 . A power tool, comprising: the solid battery according to claim 9 ; and a movable portion to which electric power is supplied from the solid battery. 16 . Electronic equipment comprising: the solid battery according to claim 9 , wherein the electronic equipment receives supply of electric power from the solid battery. 17 . A manufacturing method for a solid battery, the manufacturing method comprising: applying a first electrolyte layer to a first release film; laminating a first positive electrode layer, a first current collecting layer, and a second positive electrode layer on the first electrolyte layer in this order to obtain a first laminate body; connecting a first insulating layer to at least part of a side surface portion of the first laminate body; applying a second electrolyte layer to a second release film; laminating a first negative electrode layer, a second current collecting layer, and a second negative electrode layer on the second electrolyte layer in this order to obtain a second laminate body; connecting a second insulating layer to at least part of a side surface portion of the second laminate body; releasing the first release film from the first laminate body; releasing the second release film from the second laminate body; and laminating the first laminate body and the second laminate body along a main plane of the first electrolyte layer where the first positive electrode layer is not laminated thereto and a main plane of the second negative e
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