IP Library Granted Patent US 9,893,373
Granted Patent B2
US 9,893,373 · App. 13/699,210 · Granted Feb 13, 2018

Reinforced electrolyte membrane

Inventors: Michael Andrew Yandrasits (Hastings, MN); Ji-Hwa Lee (Gyeonggi-do, KR); Youngdon Yi (KyeongGi-Do, KR); Daniel McGregor Pierpont (North St. Paul, MN); Steven Joseph Hamrock (Stillwater, MN); Mark Albert Schonewill (Bloomington, MN)
Assignee: 3M Innovative Properties Company
H01M8/1053C08J5/2206H01M8/106H01M8/1023H01M8/1039H01M8/1051H01M8/1062H01M8/1067H01M8/1069H01M8/1081C08J2327/16H01M2300/0082H01M2300/0094Y02P70/56
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 9,893,373
App. No.
13/699,210
Granted
Feb 13, 2018
Kind
B2
Abstract

An electrolyte membrane having a proton conducting polymer reinforced with a nanofiber mat made from a nanofiber comprising a fiber material selected from polymers and polymer blends; wherein the fiber material has a fiber material proton conductivity; wherein the proton conducting polymer has a proton conducting polymer conductivity; and wherein the fiber material proton conductivity is less than the proton conducting polymer conductivity, and methods of making. In some embodiments, the nanofiber further comprises a proton conducting polymer.

Claims (30)

1. An electrolyte membrane, comprising:

a first proton conducting polymer reinforced with a nanofiber mat;

wherein the nanofiber mat is made from a nanofiber comprising a fiber material selected from the group consisting of (i) PES, (ii) a PES blend, (iii) PEI, (iv) a PEI blend, (v) PBI, (vi) a PBI blend, (vii) PPO, (viii) a PPO blend, (ix) PEEK, (x) a PEEK blend, (xi) PPES, (xii) a PPES blend, (xiii) PEK, (xiv) a PEK blends, and (xv) combinations thereof, and

wherein the nanofiber has an average diameter no greater than 1000 nm; and

wherein the first proton conducting polymer is selected from the group consisting of highly fluorinated ionomer, perfluorinated ionomer, hydrocarbon ionomer, blends and combinations thereof.

2. The electrolyte membrane of claim 1 , wherein the fiber material is PES blended with PVDF.

3. The electrolyte membrane of claim 1 , wherein the fiber material comprises at least one of: PES, PEI, PBI, PPO, PEEK, PPES, and PEK blended with a proton conducting polymer.

4. The electrolyte membrane of claim 1 , wherein the fiber material is crosslinked.

5. The electrolyte membrane of claim 1 , wherein the nanofiber mat has an average basis weight in a range from 3.2 g/m 2 to 6.5 g/m 2 .

6. The electrolyte membrane of claim 1 , wherein the electrolyte membrane has a thickness in the range of from about 10 micrometers to about 50 micrometers.

7. The electrolyte membrane of claim 1 , wherein the first proton conducting polymer further comprises a stabilizing additive comprising an element selected from the group consisting of Mn and Ce.

8. The electrolyte membrane of claim 7 , wherein the first proton conducting polymer comprises a pendant group having the structure selected from the group consisting of:

—OCF 2 CF 2 CF 2 CF 2 SO 3 Y,

—OCF 2 CF(CF 3 )OCF 2 CF 2 SO 3 Y, and

—CF 2 SO 2 N(Z)SO 2 (CF 2 ) 3 SO 3 Y,

wherein Y is a hydrogen ion or a cation and Z is a suitable countercation.

9. The electrolyte membrane of claim 8 , wherein the first proton conducting polymer has an equivalent weight of 900 or less.

10. The electrolyte membrane of claim 1 , wherein the fiber material further comprises a stabilizing additive comprising an element selected from the group consisting of Mn and Ce.

11. A membrane electrode assembly comprising the electrolyte membrane of claim 1 .

12. The electrolyte membrane of claim 1 , wherein an average thickness of the nanofiber mat is in a range of about 20% to 60% of an average thickness of the electrolyte membrane.

13. The electrolyte membrane of claim 1 , wherein the electrolyte membrane comprises the nanofiber mat in a central layer region with a proton conducting polymer layer on either side and wherein the center layer region is smaller than the proton conducting polymer layer.

14. The electrolyte membrane of claim 1 , wherein nanofibers in the nanofiber mat are not fused together.

15. The electrolyte membrane of claim 1 , wherein the nanofiber mat is made from a nanofiber comprising a fiber material selected from the group consisting of (i) PES, (ii) PEI, (iii) (v) PBI, (iv) PPO, (v) PEEK, (vi) PPES, (vii) PEK, and (viii) combinations thereof.

16. A multilayer electrolyte membrane comprising:

the electrolyte membrane of claim 1 , further comprising at least one layer of a second proton conducting polymer adhered to a major surface of the electrolyte membrane, wherein the second proton conducting polymer is selected from the group consisting of highly fluorinated ionomer, perfluorinated ionomer, hydrocarbon ionomer, blends and combinations thereof.

17. A membrane electrode assembly comprising the multilayer electrolyte membrane of claim 16 .

18. A method of making an electrolyte membrane, comprising:

(a) providing a nanofiber mat comprising a nanofiber comprising a fiber material, wherein the fiber material comprises a polymer selected from the group consisting of (i) PES, (ii) PES blends, (iii) PEI, (iv) PEI blends, (v) PBI, (vi) PBI blends, (vii) PPO, (viii) PPO blends, (ix) PEEK, (x) PEEK blends, (xi) PPES, (xii) PPES blends, (xiii) PEK, (xiv) PEK blends, and (xv) combinations thereof, wherein the nanofiber has an average diameter no greater than 1000 nm; and

(b) at least partially filling the nanofiber mat with a first proton conducting polymer, wherein the first proton conducting polymer is selected from the group consisting of highly fluorinated ionomer, perfluorinated ionomer, hydrocarbon ionomer, blends and combinations thereof.

19. The method of claim 18 further comprising applying any one of a sizing, a binder, or a polymeric treatment to the nanofiber mat prior to step b).

Assignments (3)
CHANGE OF ADDRESS Recorded Jan 14, 2026
From: JOHNSON MATTHEY HYDROGEN TECHNOLOGIES LIMITED
To: JOHNSON MATTHEY HYDROGEN TECHNOLOGIES LIMITED
Reel/Frame 074818/0894 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 15, 2023
From: 3M INNOVATIVE PROPERTIES COMPANY
To: JOHNSON MATTHEY HYDROGEN TECHNOLOGIES LIMITED
Reel/Frame 062707/0780 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 10, 2013
From: YANDRASITS, MICHAEL A.; LEE, JI-HWA; YI, YOUNGDON; PIERPONT, DANIEL M.; HAMROCK, STEVEN J.; SCHONEWILL, MARK A.
To: 3M INNOVATIVE PROPERTIES COMPANY
Reel/Frame 029604/0725 →
Continuity (2)
Provisional Application 61348086 · May 25, 2010
Related Publication 20130101918A1 · Apr 25, 2013