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TECHNOLOGY LICENSING OPPORTUNITY: GreenFuran Direct Allylation

ENERGY, DEPARTMENT OF, New Mexico · ENERGY, DEPARTMENT OF · TRIAD - DOE CONTRACTOR
Verified 14 h agoUpdated Oct 6 · Updated
Responses dueFri, Feb 12, 20275:00 PM MT · New Mexico time125 days left
PostedWed, Aug 12No amendments since
Solicitation no.S-191478SAM.gov
Set-asideNoneOpen to all firms

What the agency is buying

by RFPFinder from the notice; the solicitation governs

Los Alamos National Laboratory is offering a technology licensing opportunity for a mild, biomass-friendly route to allylated furans. Offers will be evaluated based on the notice.

Scope

  • Mild, biomass-friendly route to allylated furans
  • Manufacturers who depend on alkyl and allylic furans can now reach these valuable ingredients through a single, low-waste step
BAA — white paper first (FAR 35.016)Open to allDays to respond: 125

How to get the bid documents

  1. Open the notice on SAM.gov
  2. Read the notice; the source lists no attachments
  3. Submit before 5:00 PM MT on Feb 12, 2027

The source notice lists no attachments.

Open the original listing on SAM.gov

Details

Place of performance
Los Alamos, New Mexico
Buyer type
Federal
Notice type
Special Notice
Solicitation no.
S-191478
NAICS
NAICS 325199 (All Other Basic Organic Chemical Manufacturing)
Size standard
1,250 employees SBA table, NAICS 325199
PSC
PSC 6810 (CHEMICALS)
Period of performance
Per award from notice
BAA open until
Feb 12, 2027 from notice
Contract type
BAA (multiple awards) from notice
Evaluation
White-paper review, then invited proposals (FAR 35.016) from notice
Local presence
Not required
Amendments
None since Aug 12
Contact
Caleb Ledgerwood
Office
TRIAD - DOE CONTRACTOR
Email
licensing@lanl.gov

Not stated in the notice: estimated value, quantity, FOB terms. Check the bid documents.

Contact details from the source notice. Contact the buyer only about this solicitation.

Key dates

Wed, Aug 12, 2026Posted
Not statedQuestions due
Fri, Feb 12, 2027 · 5:00 PM MTResponses due · 125 days left

Change log

verified Fri, Oct 9 · 10:30 PM MT
  1. Posted · Special NoticeWed, Aug 12 · 8:24 AM MT
  2. Updated · This is a scientific research announcement, not a government procurement notice.Tue, Oct 6 · 10:33 PM MT

Change log starts Oct 5, 2026 (tracking began); earlier amendments at SAM.gov are being pulled in.

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Notice as published

TECHNOLOGY LICENSING OPPORTUNITY: GreenFuran Direct Allylation

A mild, biomass-friendly route to allylated furans Manufacturers who depend on alkyl and allylic furans can now reach these valuable ingredients through a single, low-waste step that trades cryogenic equipment, hazardous reagents and costly precious metals for gentle heating and cheap, recyclable catalysts. The GreenFuran Direct Allylation method developed by Los Alamos National Laboratory feeds on renewable, biomass-derived alcohols, produces only water as a byproduct and lifts away the catalyst by simple filtration, so operators gain a cleaner process, an easier cleanup and lower input costs at the same time. Crucially, the reaction succeeds on substituted and even multiply substituted furans that older approaches simply could not convert, opening a wider palette of products from one dependable platform.

The Challenge The established ways to make alkyl furans chiefly ortho-lithiation, Friedel-Crafts alkylation or transition-metal-catalyzed C-H functionalization each carry serious burdens when moved beyond the bench. Ortho-lithiation demands cryogenic temperatures and pyrophoric organolithium reagents that ignite on contact with air, while Friedel-Crafts routes consume stoichiometric quantities of Lewis acids that generate large volumes of waste and complicate cleanup and metal-catalyzed methods rely on expensive metals and ligands and inaccessible starting materials. Problems Solved GreenFuran Direct Allylation answers each of those burdens with a single dehydrative reaction that couples furans and allylic alcohols directly, eliminating the separate prefunctionalization step and its associated waste while yielding only water as the byproduct.

The process runs under mild conditions, needing just ambient conditions or gentle heating up to 60 degrees Celsius, and it uses simple, inexpensive and environmentally benign catalysts including aluminosilicates and metal phosphates. The solid catalyst separates cleanly by filtration or decanting, removing the difficult workup common to older routes, and the allylic alcohols themselves can be drawn from renewable feedstocks. Most importantly, the method extends reliably to substituted and polysubstituted furans bearing alkyl, aryl and fused-aryl groups as well as esters, aldehydes and ketones, reaching the very targets earlier methods could not.

Advantages Mild, safer operation that avoids cryogenic cooling and hazardous, air-sensitive reagents Inexpensive, environmentally friendly catalysts that can be removed and recovered by simple filtration Renewable, biomass-derived starting materials such as prenol, geraniol and phytol Only water is produced as a byproduct, cutting waste and easing cleanup One fewer synthetic step, because no separate preparation of the alcohol is needed Broad reach across simple and complex furans that older methods could not convert Market Applications Food and Beverage (flavoring agents and additives) Personal Care and Cosmetics (fragrance and cosmetic ingredients) Chemicals (surfactants for industrial and consumer formulations) Agriculture and Pest Control (insecticide ingredients) TRL 3 U.S.

Patent pending LA-UR-26-27238 LANL Tech Partnerships: Unlock the Innovative Potential Los Alamos National Laboratory offers a wide range of cutting-edge technologies and capabilities that may provide your company with a competitive edge in the market and unlock the innovative potential that can enhance, refine, and revolutionize your products. LANL's licensing program focuses on moving inventions developed by our researchers to commercial innovations. Patented and patent pending inventions and copyrighted software are available to existing and start-up companies through exclusive and non-exclusive licensing agreements.

For specific discussions, please contact [email on the source notice].

Note: This is not a call for external services for the development of this technology. https://www.lanl.gov/engage/collaboration/feynman-center/partner-with-us/licensing-technology m.lanl.gov/tech-search

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