Opportunity ID: 331402

General Information

Document Type: Grants Notice
Funding Opportunity Number: DE-FOA-0002462
Funding Opportunity Title: Chemical Upcycling of Polymers
Opportunity Category: Discretionary
Opportunity Category Explanation:
Funding Instrument Type: Grant
Category of Funding Activity: Science and Technology and other Research and Development
Category Explanation:
Expected Number of Awards:
Assistance Listings: 81.049 — Office of Science Financial Assistance Program
Cost Sharing or Matching Requirement: No
Version: Synopsis 2
Posted Date: Feb 10, 2021
Last Updated Date: May 13, 2021
Original Closing Date for Applications: May 12, 2021
Current Closing Date for Applications: May 14, 2021
Archive Date: Jun 11, 2021
Estimated Total Program Funding: $25,000,000
Award Ceiling: $1,500,000
Award Floor: $200,000

Eligibility

Eligible Applicants: Unrestricted (i.e., open to any type of entity above), subject to any clarification in text field entitled “Additional Information on Eligibility”
Additional Information on Eligibility:

Additional Information

Agency Name: Office of Science
Description:

The DOE SC program in Basic Energy Sciences (BES) announces its interest in receiving applications on behalf of single investigators and teams of investigators, which may involve multiple institutions, to support fundamental experimental and theoretical efforts that advance chemical upcycling of polymers and circular design of next-generation plastics. The term “plastic” describes a wide array of polymeric materials with diverse compositions and properties. Finished plastic products may include multiple polymeric components and often contain additives to obtain desirable physical, chemical, or mechanical properties. Understanding of chemical approaches that make use of end-of-life plastic products as feedstocks to regenerate the same product, or otherwise upcycle them to new, more valuable products, is limited. BES seeks innovative fundamental research that creates the scientific foundations for new technology solutions to reduce plastic waste, lower the energy impacts of plastic production through chemical upcycling, and create energy- and carbon-efficient feedstocks for valuable products through chemical upcycling of polymers.

 

Link to Additional Information:
Grantor Contact Information: If you have difficulty accessing the full announcement electronically, please contact:

Chris Bradley, Ph.D.

Program Manager
Email:chris.bradley@science.doe.gov

Version History

Version Modification Description Updated Date
to permit late extension May 13, 2021
Feb 10, 2021

DISPLAYING: Synopsis 2

General Information

Document Type: Grants Notice
Funding Opportunity Number: DE-FOA-0002462
Funding Opportunity Title: Chemical Upcycling of Polymers
Opportunity Category: Discretionary
Opportunity Category Explanation:
Funding Instrument Type: Grant
Category of Funding Activity: Science and Technology and other Research and Development
Category Explanation:
Expected Number of Awards:
Assistance Listings: 81.049 — Office of Science Financial Assistance Program
Cost Sharing or Matching Requirement: No
Version: Synopsis 2
Posted Date: Feb 10, 2021
Last Updated Date: May 13, 2021
Original Closing Date for Applications: May 12, 2021
Current Closing Date for Applications: May 14, 2021
Archive Date: Jun 11, 2021
Estimated Total Program Funding: $25,000,000
Award Ceiling: $1,500,000
Award Floor: $200,000

Eligibility

Eligible Applicants: Unrestricted (i.e., open to any type of entity above), subject to any clarification in text field entitled “Additional Information on Eligibility”
Additional Information on Eligibility:

Additional Information

Agency Name: Office of Science
Description:

The DOE SC program in Basic Energy Sciences (BES) announces its interest in receiving applications on behalf of single investigators and teams of investigators, which may involve multiple institutions, to support fundamental experimental and theoretical efforts that advance chemical upcycling of polymers and circular design of next-generation plastics. The term “plastic” describes a wide array of polymeric materials with diverse compositions and properties. Finished plastic products may include multiple polymeric components and often contain additives to obtain desirable physical, chemical, or mechanical properties. Understanding of chemical approaches that make use of end-of-life plastic products as feedstocks to regenerate the same product, or otherwise upcycle them to new, more valuable products, is limited. BES seeks innovative fundamental research that creates the scientific foundations for new technology solutions to reduce plastic waste, lower the energy impacts of plastic production through chemical upcycling, and create energy- and carbon-efficient feedstocks for valuable products through chemical upcycling of polymers.

 

Link to Additional Information:
Grantor Contact Information: If you have difficulty accessing the full announcement electronically, please contact:

Chris Bradley, Ph.D.

Program Manager
Email:chris.bradley@science.doe.gov

DISPLAYING: Synopsis 1

General Information

Document Type: Grants Notice
Funding Opportunity Number: DE-FOA-0002462
Funding Opportunity Title: Chemical Upcycling of Polymers
Opportunity Category: Discretionary
Opportunity Category Explanation:
Funding Instrument Type: Grant
Category of Funding Activity: Science and Technology and other Research and Development
Category Explanation:
Expected Number of Awards:
Assistance Listings: 81.049 — Office of Science Financial Assistance Program
Cost Sharing or Matching Requirement: No
Version: Synopsis 1
Posted Date: Feb 10, 2021
Last Updated Date: Feb 10, 2021
Original Closing Date for Applications:
Current Closing Date for Applications: May 12, 2021
Archive Date: Jun 11, 2021
Estimated Total Program Funding: $25,000,000
Award Ceiling: $1,500,000
Award Floor: $200,000

Eligibility

Eligible Applicants: Unrestricted (i.e., open to any type of entity above), subject to any clarification in text field entitled “Additional Information on Eligibility”
Additional Information on Eligibility:

Additional Information

Agency Name: Office of Science
Description:

The DOE SC program in Basic Energy Sciences (BES) announces its interest in receiving applications on behalf of single investigators and teams of investigators, which may involve multiple institutions, to support fundamental experimental and theoretical efforts that advance chemical upcycling of polymers and circular design of next-generation plastics. The term “plastic” describes a wide array of polymeric materials with diverse compositions and properties. Finished plastic products may include multiple polymeric components and often contain additives to obtain desirable physical, chemical, or mechanical properties. Understanding of chemical approaches that make use of end-of-life plastic products as feedstocks to regenerate the same product, or otherwise upcycle them to new, more valuable products, is limited. BES seeks innovative fundamental research that creates the scientific foundations for new technology solutions to reduce plastic waste, lower the energy impacts of plastic production through chemical upcycling, and create energy- and carbon-efficient feedstocks for valuable products through chemical upcycling of polymers.

 

Link to Additional Information:
Grantor Contact Information: If you have difficulty accessing the full announcement electronically, please contact:

Chris Bradley, Ph.D.

Program Manager
Email:chris.bradley@science.doe.gov

Folder 331402 Full Announcement-DE-FOA-0002462 -> DE-FOA-0002462.pdf

Packages

Agency Contact Information: Chris Bradley, Ph.D.
Program Manager
Email: chris.bradley@science.doe.gov
Who Can Apply: Organization Applicants

Assistance Listing Number Competition ID Competition Title Opportunity Package ID Opening Date Closing Date Actions
81.049 PKG00265381 Feb 10, 2021 May 14, 2021 View

Package 1

Mandatory forms

331402 RR_SF424_3_0-3.0.pdf

331402 RR_Budget_1_4-1.4.pdf

331402 PerformanceSite_3_0-3.0.pdf

331402 RR_OtherProjectInfo_1_4-1.4.pdf

Optional forms

331402 RR_SubawardBudget_1_4-1.4.pdf

331402 SFLLL_2_0-2.0.pdf

2025-07-11T05:50:07-05:00

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