IP Library › Granted Patent US 10,333,176
Granted Patent B2
US 10,333,176 · App. 14/457,673 · Granted Jun 25, 2019

Polymer electrolyte membranes for rechargeable batteries

Inventors: Mukerrem Cakmak (Munroe Falls, OH); Cheng Qu (Akron, OH)
Assignee: THE UNIVERSITY OF AKRON
H01M10/26H01M2/145H01M2/162H01M2/1646H01M10/30H01M2300/0014H01M2300/0085Y10T29/49115
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Quick Facts
Patent No.
US 10,333,176
App. No.
14/457,673
Granted
Jun 25, 2019
Kind
B2
Abstract

An electrolyte membrane for use in a rechargeable battery includes a polymer layer and platelet particles, where the polymer layer is reinforced with a fiber mat, and the polymer layer retains an electrolyte. A rechargeable battery uses the membrane in a position between a positive electrode and negative electrode where the membrane serves as an ion conductor for the battery.

Claims (13)

1. An electrolyte membrane for use in a rechargeable battery comprising a first polymer layer formed of poly(acrylic acid) and reinforced with a fiber mat made from polymeric fibers formed of a polymer selected from the group consisting of polyvinylidene difluoride and the semi-crystalline polyamide resin nylon-MXD6, a second polymer layer formed of poly(acrylic acid) and positioned on the first polymer layer, wherein the second polymer layer includes nanoclay platelet particles, wherein the first polymer layer and the second polymer layer retain potassium hydroxide as an electrolyte, wherein the first polymer layer is devoid of nanoclay platelet particles and the second polymer layer is devoid of a fiber mat made from polymer fibers, and wherein the first polymer layer forms an outer layer of the electrolyte membrane.

2. The membrane of claim 1 , wherein the platelet particles are dispersed throughout the second polymer layer.

3. The membrane of claim 1 , the electrolyte membrane having a thickness, wherein the first polymer layer reinforced with the fiber mat makes up from 65% to 80% of the thickness of the electrolyte membrane, and wherein the second polymer layer makes up the remainder of the thickness of the electrolyte membrane.

4. The membrane of claim 1 , wherein the polymeric fibers are formed of polyvinylidene difluoride.

5. The membrane of claim 1 , wherein the polymeric fibers are formed of the semi-crystalline polyamide resin nylon-MXD6.

6. The membrane of claim 1 , the fiber mat being formed of polymeric fibers having a diameter of 1 μm or less.

7. The membrane of claim 1 , the fiber mat being formed of polymeric fibers having a diameter of 300 nm or less.

8. The membrane of claim 1 , wherein the electrolyte membrane includes from 5 or more to 15 or less vol. % polymeric fibers and from 1 or more to 5 or less vol. % nanoclay platelet particles.

9. A rechargeable battery comprising a positive electrode and a negative electrode, the membrane of claim 1 being positioned between the positive electrode and the negative electrode of the rechargeable battery, the membrane adapted to act as an ion conductor for the battery.

10. The rechargeable battery of claim 9 , wherein the rechargeable battery is a nickel-zinc rechargeable battery.

11. The rechargeable battery of claim 9 , the membrane having a thickness of from 100 μm or more to 500 μm or less.

12. A rechargeable battery comprising a positive electrode and a negative electrode, a membrane positioned between the positive electrode and the negative electrode and adapted to act as an ion conductor for the rechargeable battery, the membrane comprising a polymer layer including a plurality of platelet particles therein to thereby prevent or minimize dendrite growth, the polymer layer further comprising a fiber mat made from polymeric fibers to thereby reinforce the polymer layer, the polymer layer further retaining an electrolyte, and the polymer layer including about 10 vol. % polyvinylidene difluoride (PVDF) fibers and about 3.8 vol. % nanoclay platelet particles.

13. A rechargeable battery comprising a positive electrode and a negative electrode, a membrane positioned between the positive electrode and the negative electrode and adapted to act as an ion conductor for the rechargeable battery, the membrane comprising a polymer layer including a plurality of platelet particles therein to thereby prevent or minimize dendrite growth, the polymer layer further comprising a fiber mat made from polymeric fibers to thereby reinforce the polymer layer, the polymer layer further retaining an electrolyte, and the polymer layer including about 9 vol. % fibers and about 3.8 vol. % nanoclay platelet particles, wherein the fibers are made from the semi-crystalline polyamide resin nylon-MXD6.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 13, 2014
From: QU, CHENG; CAKMAK, MUKERREM
To: THE UNIVERSITY OF AKRON
Reel/Frame 033524/0682 →
Continuity (2)
Provisional Application 61864868 · Aug 12, 2013
Related Publication 20150044574A1 · Feb 12, 2015