Licensing Opportunity: Scalable Nitrogen-Carbon Catalyst for CO2 Reduction Using Nitrogen Plasma (N2) Treatment

Location: Tennessee
Posted: Sep 11, 2024
Due: Oct 26, 2024
Agency: ENERGY, DEPARTMENT OF
Type of Government: Federal
Category:
  • F - Natural Resources and Conservation Services
Solicitation No: 2024-09-11-U
Publication URL: To access bid details, please log in.
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Licensing Opportunity: Scalable Nitrogen-Carbon Catalyst for CO2 Reduction Using Nitrogen Plasma (N2) Treatment
Active
Contract Opportunity
Notice ID
2024-09-11-U
Related Notice
Department/Ind. Agency
ENERGY, DEPARTMENT OF
Sub-tier
ENERGY, DEPARTMENT OF
Office
ORNL UT-BATTELLE LLC-DOE CONTRACTOR
General Information
  • Contract Opportunity Type: Special Notice (Original)
  • All Dates/Times are: (UTC-04:00) EASTERN STANDARD TIME, NEW YORK, USA
  • Original Published Date: Sep 11, 2024 11:23 am EDT
  • Original Response Date: Oct 26, 2024 05:00 pm EDT
  • Inactive Policy: Manual
  • Original Inactive Date: Oct 27, 2024
  • Initiative:
Classification
  • Original Set Aside:
  • Product Service Code:
  • NAICS Code:
  • Place of Performance:
    Oak Ridge , TN 37830
    USA
Description

Invention Reference Number: 202405555



This technology overcomes the limitations of carbon materials like Carbon Nanotubes (CNT) and graphene in carbon dioxide reduction. These materials show significant inactivity in electrochemical carbon dioxide (Na-CO2)reduction applications. This technology is a unique solution focusing on enhancing the efficacy of sodium-carbon dioxide (Na-CO2) batteries. It uses a specialized treatment process applied to carbonaceous materials. The result is much improved efficiency and effectiveness of next generation metal-CO2 batteries.



Description



Traditionally, enhancing carbon dioxide reduction efficiency involves laborious and time-consuming methods, such as coating with ruthenium metallic catalysts or organic solvent processing at elevated temperature. However, these methods are costly and challenging to scale for broader applications. This technology introduces a novel, cost-effective, and scalable method that significantly enhances carbon dioxide reduction capabilities of these carbon materials for use in Na-CO2 batteries. The technology subjects these materials to nitrogen plasma treatment that plays a crucial role in activating the carbonaceous materials, thereby making them more efficient for the carbon dioxide reduction reaction process. By altering the surface properties and electronic structure of the carbonaceous materials through nitrogen plasma treatment, their catalytic activity is enhanced, particularly for CO2 reduction. This increases efficiency and effectiveness of Na-CO2 batteries for the next generation of high-performance batteries.



Benefits




  • Increases efficiency and effectiveness of Na-CO2 batteries

  • Environmentally friendly

  • High yield

  • Single step, time efficient

  • Scalable

  • Broadly applicable

  • Tunable



Applications and Industries




  • Carbon dioxide reduction

  • Metal-CO2 batteries

  • Battery manufacturers



Contact



To learn more about this technology, email partnerships@ornl.gov or call 865-574-1051.


Attachments/Links
Contact Information
Contracting Office Address
  • Oak Ridge National Laboratory PO Box 2008
  • Oak Ridge , TN 37831
  • USA
Primary Point of Contact
Secondary Point of Contact


History
  • Sep 11, 2024 11:23 am EDTSpecial Notice (Original)
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