ELECTROCHEMICAL ELEMENT, METHOD FOR MANUFACTURING ELECTRODE THEREOF, AND LITHIATION TREATMENT METHOD AND LITHIATION TREATMENT APPARATUS
A method for manufacturing an electrode for an electrochemical element capable of absorbing and releasing lithium ions includes a lithiation treatment method for compensating an irreversible capacity of the electrode for an electrochemical element. In the lithiation treatment method, lithium is provided to the electrode by allowing a lithium vapor to flow with a movement route of the lithium vapor limited.
1 . A method for manufacturing an electrode for an electrochemical element capable of electrochemically absorbing and releasing a lithium ion, the method comprising:
forming an active material layer of the electrode; and
providing lithium to the electrode by allowing a lithium vapor to flow with a movement route of the lithium vapor limited.
2 . The method for manufacturing an electrode for an electrochemical element according to claim 1 , wherein the movement route of the lithium vapor is limited by allowing at least one gas selected from a noble gas, a hydrogen gas and a mixture gas thereof to flow into the lithium vapor so as to limit a movement amount of the lithium vapor.
3 . The method for manufacturing an electrode for an electrochemical element according to claim 2 , wherein a flow rate of the gas is gradually reduced with a passage of time.
4 . The method for manufacturing an electrode for an electrochemical element according to claim 2 , wherein the gas is allowed to flow into a central part of a flow of the lithium vapor.
5 . The method for manufacturing an electrode for an electrochemical element according to claim 1 , wherein the lithium vapor is generated by reducing a pressure of an atmosphere enclosing an evaporation source of lithium and the electrode, and heating the evaporation source of lithium.
6 . A lithiation treatment method for an electrode for an electrochemical element capable of electrochemically absorbing and releasing a lithium ion, the method comprising:
limiting a movement route of a lithium vapor; and
providing lithium to the electrode by treating the electrode with the lithium vapor.
7 . The lithiation treatment method for an electrode for an electrochemical element according to claim 6 , wherein the movement route of the lithium vapor is limited by allowing at least one gas selected from a noble gas, a hydrogen gas and a mixture gas thereof to flow into the lithium vapor so as to limit a movement amount of the lithium vapor.
8 . The lithiation treatment method for an electrode for an electrochemical element according to claim 7 , wherein a flow rate of the gas is gradually reduced with a passage of time.
9 . The lithiation treatment method for an electrode for an electrochemical element according to claim 7 , wherein the gas is allowed to flow into a central part of a flow of the lithium vapor.
10 . The lithiation treatment method for an electrode for an electrochemical element according to claim 6 , wherein the lithium vapor is generated by reducing a pressure of an atmosphere enclosing an evaporation source of lithium and the electrode and heating the evaporation source of lithium.
11 . An electrochemical element comprising:
a first electrode capable of electrochemically absorbing and releasing a lithium ion, the electrode being treated with a lithium vapor with a movement route of the lithium vapor limited so as to be provided with lithium;
a second electrode capable of electrochemically absorbing and releasing a lithium ion; and
an electrolyte interposed between the first electrode and the second electrode.
12 . An apparatus for lithiation treatment of an electrode for an electrochemical element capable of electrochemically absorbing and releasing a lithium ion, comprising:
a lithium vapor deposition nozzle allowing a lithium vapor to flow with a movement route of the lithium vapor limited so as to provide lithium to a surface of the electrode; and
a chamber for accommodating the electrode and the lithium vapor deposition nozzle.
13 . The apparatus for lithiation treatment according to claim 12 , further comprising a gas nozzle for allowing at least one gas selected from a noble gas, a hydrogen gas and a mixture gas thereof to flow into the lithium vapor.
14 . The apparatus for lithiation treatment according to claim 13 , further comprising a gas flow controller for gradually reducing a flow rate of the gas with a passage of time.
15 . The apparatus for lithiation treatment according to claim 13 , wherein the gas nozzle is provided in the lithium vapor deposition nozzle so that the gas flows into a central part of the lithium vapor.
16 . The apparatus for lithiation treatment according to claim 12 , further comprising:
a heating section provided in the chamber and heating an evaporation source of lithium so as to generate the lithium vapor; and
a vacuum pump for reducing a pressure inside the chamber.