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Method of making a fuel cell polymer electrolyte membrane comprising manganese oxide

Patent ·
OSTI ID:1531713
Fuel cell membrane electrode assemblies and fuel cell polymer electrolyte membranes are provided comprising manganese oxides which demonstrate increased durability. Methods of making same are provided.
Research Organization:
3M Innovative Properties Company, St. Paul, MN (United States)
Sponsoring Organization:
USDOE
DOE Contract Number:
FC36-02AL67621
Assignee:
3M Innovative Properties Company (St. Paul, MN)
Patent Number(s):
8,092,954
Application Number:
12/621,795
OSTI ID:
1531713
Country of Publication:
United States
Language:
English

References (12)

Performance Evaluation of Platinum Dispersed Self-humidifying Polymer Electrolyte Membrane Prepared by Using RF Magnetron Sputter journal February 2003
Vacuum vapor deposited thin films of a perylene dicarboximide derivative: Microstructure versus deposition parameters journal May 1988
Fabrication of biologically based microstructure composites for vacuum field emission journal October 1992
Effects of morphology on NO2 detection in air at room temperature with phthalocyanine thin films journal December 1990
High dispersion and electrocatalytic properties of platinum on well-aligned carbon nanotube arrays journal January 2004
Preparation, characterization and catalytic properties of perfluorosulfonated ion-exchange membranes containing surface-concentrated, hydrated ruthenium oxide particles journal December 1986
Molecule-Substrate Vibration of CO on Ni(100) Studied by Infrared-Emission Spectroscopy journal February 1984
Summary Abstract: Dramatic variation of the physical microstructure of a vapor deposited organic thin film
  • Kam, K. K.; Debe, M. K.; Poirier, R. J.
  • Journal of Vacuum Science & Technology A: Vacuum, Surfaces, and Films, Vol. 5, Issue 4 https://doi.org/10.1116/1.574490
journal July 1987
Development of novel self-humidifying composite membranes for fuel cells journal October 2003
Incorporation and characterisation of oxides of manganese, cobalt and lithium into Nafion 117 membranes journal January 2001
Effect of gravity on copper phthalocyanine thin films III: Microstructure comparisons of copper phthalocyanine thin films grown in microgravity and unit gravity journal May 1990
Role of ion-exchange membrane morphology and sorption properties in facilitated transport di-olefin/mono-olefin separations journal June 1998

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