IP Library Granted Patent US 10,811,688
Granted Patent B2
US 10,811,688 · App. 15/672,878 · Granted Oct 20, 2020

Solid, ionically conducting polymer material, and methods and applications for same

Inventors: Michael A. Zimmerman (North Andover, MA); Alexei B. Gavrilov (Woburn, MA)
Assignee: IONIC MATERIALS, INC.
H01M4/626H01M4/0411H01M4/06H01M4/24H01M4/364H01M4/38H01M4/48H01M4/50H01M4/502H01M4/58H01M4/62H01M4/622H01M4/624H01M4/625H01M6/181H01M10/054H01M10/0565H01M10/24H01M10/26H01M4/42H01M2300/0082
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Quick Facts
Patent No.
US 10,811,688
App. No.
15/672,878
Granted
Oct 20, 2020
Kind
B2
Abstract

The invention features a method of making a battery electrode for an electrochemical cell. The method includes mixing a base polymer with an ion source, and then reacting the base polymer with an electron acceptor in the presence of the ion source to form a solid, ionically conductive polymer material having an ionic conductivity greater than 1×10 −4 S/cm at room temperature. The battery electrode is electrochemically active when used in the electrochemical cell.

Claims (16)

1. A method of making a battery electrode for an electrochemical cell comprising:

producing a solid, ionically conductive polymer material having an ionic conductivity of greater than 1×10 −4 S/cm at a room temperature by reacting a base polymer, an ion source, and an electron acceptor;

adding an electrochemically active material to the battery electrode; and

mixing the electrochemically active material with the solid, ionically conductive polymer material, whereby the battery electrode is electrochemically active when used in the electrochemical cell;

wherein said ion source further comprises at least one of LiO 2 , Na 2 O, MgO, CaO, ZnO, KOH, NaOH, CaCl 2 , AlCl 3 , MgCl 2 , LiTFSI (lithium bis-trifluoromethanesulfonimide), LiBOB (Lithium bis(oxalate) borate) and a combination of at least two of the aforementioned.

2. A method of making a battery electrode for an electrochemical cell comprising:

producing a solid, ionically conductive polymer material having an ionic conductivity of greater than 1×10 −4 S/cm at a room temperature by reacting a base polymer, an ion source, and an electron acceptor;

adding an electrochemically active material to the battery electrode; and

mixing the electrochemically active material with the solid, ionically conductive polymer material, whereby the battery electrode is electrochemically active when used in the electrochemical cell;

wherein said base polymer comprises at least one of a liquid crystal polymer, a polyether ether ketone (PEEK), a polyphenylene sulphide (PPS), a semicrystalline polymer with a crystallinity index of greater than 30%, and a combination of at least two of the aforementioned; and

wherein said electron acceptor is oxygen, wherein said ion source comprises lithium, and wherein said base polymer is polyphenylene sulphide (PPS).

3. A method of making a battery electrode for an electrochemical cell comprising:

producing a solid, ionically conductive polymer material having an ionic conductivity of greater than 1×10 −4 S/cm at a room temperature by reacting a base polymer, an ion source, and an electron acceptor;

adding an electrochemically active material to the battery electrode; and

mixing the electrochemically active material with the solid, ionically conductive polymer material, whereby the battery electrode is electrochemically active when used in the electrochemical cell;

further comprising a heating step wherein in said heating step the electron acceptor is a vapor.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 18, 2019
From: IM HOLDINGS I, INC.
To: IONIC MATERIALS, INC.
Reel/Frame 050762/0064 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 7, 2017
From: ZIMMERMAN, MICHAEL A.; GAVRILOV, ALEXEI B.
To: IONIC MATERIALS, INC.
Reel/Frame 044051/0578 →
Continuity (2)
Continuation 14559430 · Dec 3, 2014
Related Publication 20170338492A1 · Nov 23, 2017
Cited By (1)
US 12,322,782