IP Library Patent Application 16297463
Patent Application
App. No. 16/297,463

POLYAMIDES, POLYUREAS, AND POLYPHOSPHORAMIDES AS ELECTROLYTES FOR LITHIUM ION BATTERIES

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Patent No.
US None
App. No.
16/297,463
Abstract

New polyamide-based, polyurea-based and polyphosphoramide-based polymers have been synthesized. When these polymers are combined with electrolyte salts, such polymer electrolytes have excellent electrochemical stability as anolytes in lithium battery cells.

Claims (47)

1 . A polymer, comprising:

a polymer structure described by:

wherein:

each R is selected independently from the group consisting of alkyl and/or aryl substituents; and

a and n are integers, wherein a ranges from 1 to 10, and n ranges from 1 to 1000.

2 . The polymer of claim 1 further comprising an electrolyte salt, wherein the polymer is an electrolyte.

3 . The polymer of claim 2 further comprising ceramic electrolyte particles.

4 . The polymer of claim 1 wherein the polymer is crosslinked.

5 . The polymer of claim 4 further comprising an electrolyte salt, wherein the polymer is an electrolyte.

6 . A polymer, comprising:

a polymer structure described by:

wherein:

each R is selected independently from the group consisting of alkyl and/or aryl substituents; and

a and n are integers, wherein a ranges from 1 to 10, and n ranges from 1 to 1000;

7 . The polymer of claim 6 further comprising an electrolyte salt, wherein the polymer is an electrolyte.

8 . The polymer of claim 7 further comprising ceramic electrolyte particles.

9 . The polymer of claim 6 wherein the polymer is crosslinked.

10 . The polymer of claim 9 further comprising an electrolyte salt, wherein the polymer is an electrolyte.

11 . A polymer, comprising:

a polymer structure described by:

wherein:

each R is selected independently from the group consisting of alkyl and/or aryl substituents; and

a and n are integers, wherein a ranges from 1 to 10, and n ranges from 1 to 1000;

12 . The polymer of claim 11 further comprising an electrolyte salt, wherein the polymer is an electrolyte.

13 . The polymer of claim 12 further comprising ceramic electrolyte particles.

14 . The polymer of claim 11 wherein the polymer is crosslinked.

15 . The polymer of claim 14 further comprising an electrolyte salt, wherein the polymer is an electrolyte.

16 . A polymer, comprising:

a polymer structure described by:

wherein:

each R is selected independently from the group consisting of alkyl and/or aryl substituents; and

a and n are integers, wherein a ranges from 1 to 10, and n ranges from 1 to 1000;

17 . The polymer of claim 16 further comprising an electrolyte salt, wherein the polymer is an electrolyte.

18 . The polymer of claim 17 further comprising ceramic electrolyte particles.

19 . The polymer of claim 16 wherein the polymer is crosslinked.

20 . The polymer of claim 19 further comprising an electrolyte salt, wherein the polymer is an electrolyte.

21 . An electrochemical cell, comprising:

an anode configured to absorb and release lithium ions;

a cathode comprising cathode active material particles, an electronically-conductive additive, and a catholyte;

a current collector adjacent to an outside surface of the cathode; and

a separator region between the anode and the cathode, the separator region comprising the electrolyte according to claim 7 or claim 17 , and the electrolyte salt is a lithium salt.

22 . The electrochemical cell of claim 21 wherein the separator region comprises two layers: an anolyte layer adjacent to the anode, the anolyte layer comprising an anolyte, and a separator electrolyte layer positioned between the anolyte layer and the cathode, the separator electrolyte layer comprising a separator electrolyte, wherein the anolyte comprises the electrolyte according to claim 7 or claim 17 .

23 . The electrochemical cell of claim 22 wherein the separator electrolyte comprises a solid polymer electrolyte.

24 . The electrochemical cell of claim 22 wherein at least one of the anolyte and the separator electrolyte further comprises ceramic electrolyte particles.

25 . The electrochemical cell of claim 22 wherein at least one of the anolyte and the separator electrolyte is crosslinked.

26 . The electrochemical cell of claim 21 wherein the anode comprises a solid metal film made of a material selected from the group consisting of lithium metal and lithium alloys.

27 . The electrochemical cell of claim 21 wherein the anode comprises anode active material particles selected from the group consisting of lithium titanate, graphite, silicon, and combinations thereof, wherein the anode further comprises the electrolyte according to claim 7 or claim 17 .

Assignments (2)
NUNC PRO TUNC ASSIGNMENT Recorded Feb 23, 2020
From: SEEO, INC.
To: ROBERT BOSCH GMBH
Reel/Frame 051896/0001 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 8, 2019
From: EITOUNI, HANY BASAM; BHEEMIREDDY, SAMBASIVA R.
To: SEEO, INC
Reel/Frame 048552/0809 →