Licensing Opportunity: Catalysts for Oxygen and Hydrogen Evolution for the Electrolytic Hydrogen Production
| Location: |
Tennessee |
| Posted: |
Sep 11, 2024 |
| Due: |
Oct 26, 2024 |
| Agency: |
ENERGY, DEPARTMENT OF |
| Type of Government: |
Federal |
| Category: |
|
| Solicitation No: |
2024-09-11_L |
| Publication URL: |
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Licensing Opportunity: Catalysts for Oxygen and Hydrogen Evolution for the Electrolytic Hydrogen Production
Active
Contract Opportunity
Department/Ind. Agency
ENERGY, DEPARTMENT OF
Sub-tier
ENERGY, DEPARTMENT OF
Office
ORNL UT-BATTELLE LLC-DOE CONTRACTOR
General Information
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Contract Opportunity Type: Special Notice (Original)
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All Dates/Times are: (UTC-04:00) EASTERN STANDARD TIME, NEW YORK, USA
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Original Published Date: Sep 11, 2024 10:28 am EDT
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Original Response Date: Oct 26, 2024 05:00 am EDT
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Inactive Policy: Manual
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Original Inactive Date:
Oct 27, 2024
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Initiative:
Classification
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Original Set Aside:
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Product Service Code:
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NAICS Code:
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Place of Performance:
Oak Ridge
,
TN
37830
USA
Description
Invention Reference Number: 202405648
Hydrogen is in great demand, but production relies heavily on hydrocarbons utilization. This process contributes greenhouse gases release into the atmosphere. Each kilogram of hydrogen produced creates approximately 10 kilograms of carbon dioxide, but most of it is not being captured. This technology is a cleaner way to make hydrogen through water electrolysis using designed electrocatalysts, with a focus on oxygen evolution as well targeting for hydrogen, using renewable solar, wind or tidal energy.
Description
This invention provides a novel catalyst composition with a unique formulation that involves doping single atoms into a matrix, significantly enhancing the electrochemical properties of the catalyst and superior oxygen evolution reaction (OER) activity and stability. Two electrodes create the two reactions, one for OER and one for hydrogen. This invention provides a novel catalyst composition comprising later transition metal-doped nickel-iron-oxide, which demonstrates superior OER activity and stability. The unique formulation involves doping single atoms of transition metals into a NiFeOx matrix, which significantly enhances the electrochemical properties of the catalyst.
Benefits
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Elimination of critical, expensive elements
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Less costly system design
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Low cost hydrogen production
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Domestically manufactured
Applications and Industries
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Electrolysis industry and manufacturers
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Companies that makes catalysts
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Companies that make electrodes
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Membrane electrode assembly companies
Contact
To learn more about this technology, email partnerships@ornl.gov or call 865-574-1051.
Attachments/Links
Contact Information
Contracting Office Address
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Oak Ridge National Laboratory PO Box 2008
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Oak Ridge , TN 37831
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USA
Secondary Point of Contact
History
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Sep 11, 2024 10:28 am EDTSpecial Notice (Original)
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