Licensing Opportunity: Tailored Polymer Binder for Flexible Sulfide Electrolyte Films

Agency: ENERGY, DEPARTMENT OF
State: Tennessee
Type of Government: Federal
FSC Category:
  • A - Research and development
NAICS Category:
  • 541611 - Administrative Management and General Management Consulting Services
Posted Date: Sep 11, 2024
Due Date: Oct 26, 2024
Solicitation No: 2024-09-11-R
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Description

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Licensing Opportunity: Tailored Polymer Binder for Flexible Sulfide Electrolyte Films
Active
Contract Opportunity
Notice ID
2024-09-11-R
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 10:51 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: 202405587



Next generation batteries for electric vehicles (EVs) and other manufacturing needs require solid-state batteries made with high-performance solid electrolytes. These thin films are critical components but are difficult to manufacture to meet performance standards. This technology uses binders in the manufacturing process to overcome this hurdle, optimizing the binder’s molecular weight and enhancing the mechanical performance of solid electrolyte films and the solid-state battery performances. This significantly improves advanced battery manufacturing for next generation production.



Description



Advanced solid-state batteries made of thin-film sulfide solid-state electrolytes require efficient, flexible, and high-performance solid electrolytes, but this is a significant challenge to manufacture. Overlooked in the manufacturing process is the binder, especially its molecular weight that impacts its integrity and capabilities. This technology optimizes the binder’s chain conformations, enhancing the mechanical and electrochemical performance of the solid electrolyte batteries by using powders to bind the electrolytes. The technology specifically adds a solvent and polymeric binder. By tuning its molecular weight, the binder conforms in the slurry during the wet chemical process of production. The result is a thin film with higher density electrodes that allows increased longevity as well as increased performance of the battery.



Benefits




  • Reduced cost

  • Improved safety

  • Improved performance and reliability

  • Increased scalability and efficiency

  • Improved flexibility

  • Enhanced charging capability

  • Higher energy density

  • Easier to make

  • Reduced thickness

  • Reduced weight

  • Uses less raw material

  • Increased battery life, reduces recycling concerns



Applications and Industries




  • Material manufacturers and suppliers for solid-state battery industry

  • Solid-state battery manufacturers

  • Any industry using solid-state batteries



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 10:51 am EDTSpecial Notice (Original)
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