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Special NoticeAmendment 2

TECHNOLOGY LICENSING OPPORTUNITY: PFAS-Free Sulfonated Poly(norbornene) Ionomeric Binders

TRIAD - DOE CONTRACTOR · Los Alamos, New Mexico, 87545

Response status

Historical record

Jan 7, 2026, 12:00 AM UTC

This notice is no longer open.

Posted
Jun 29, 2026
Archive date
Jun 30, 2027
SAM status
Active
This is a preserved solicitation record. The response window is closed because the published deadline passed.

Answer-first brief

What the source record says

  • TRIAD - DOE CONTRACTOR published this special notice.
  • Competition is listed as No Set aside used.
  • The place of performance is Los Alamos, New Mexico.
  • The notice uses NAICS 325211 (Plastics Material and Resin Manufacturing).

Procurement identity

Notice ID
a9a4cf0e8a554cc4877da95954aaed63
Solicitation
S-194655
Base type
Special Notice
Version
2 of 2

Solicitation facts

Structured fields from the current SAM notice version. A dash means the source did not publish a value.

Notice type
Special Notice
Solicitation number
S-194655
Set-aside
No Set aside used
Set-aside code
Posted
Jun 29, 2026
Responses due
Jan 7, 2026, 12:00 AM UTC
Archive date
Jun 30, 2027
Archive type
autocustom
Base type
Special Notice
Organization type
OFFICE
Benchmark category
Category confidence
Category source
Last seen
Aug 29, 2026

Buyer and place

Office hierarchy and place of performance as published.

Department
ENERGY, DEPARTMENT OF
Department code
Subagency
ENERGY, DEPARTMENT OF
Subagency code
Office
TRIAD - DOE CONTRACTOR
Organization path
Organization path codes
Office address
Columbus, OH, 43201, USA
Place of performance
Los Alamos, New Mexico, 87545
City code
State
New Mexico
State code
NM
Postal code
87545
Country

Points of contact

Contact details from the current notice version.

Notice description

Source text reproduced without an AI summary.

A Cleaner, Tunable Alternative for Hydrogen Fuel Cells and Water Electrolyzers Hydrogen energy systems depend on a small but critical polymer layer inside each electrode, called an ionomeric binder, that shuttles protons, manages water and lets reactant gases reach the catalyst. The industry has long relied on perfluorosulfonic acid (PFSA) materials for this role, which contain PFAS (per? and polyfluoroalkyl substances) � �forever chemicals� � now under increasing regulatory pressure. Researchers at Los Alamos National Laboratory have developed a family of highly sulfonated poly(norbornene) ionomers that are entirely PFAS-free, deliver strong proton conductivity, do not poison precious-metal catalysts the way conventional aromatic alternatives do, and can be chemically tuned to keep electrodes dry under load. Together, these qualities position the material as a drop-in path forward for high-performance proton exchange membrane (PEM) fuel cells and water electrolyzers in a tightening environmental landscape. How it Works PFAS-Free Sulfonated Poly(norbornene) Ionomeric Binders are a class of aliphatic sulfonated poly(norbornene) polymers designed specifically as electrode ionomers in proton-conducting devices. The polymer�s backbone is built from fused bicyclic norbornane units that lack the aromatic pi-electron systems found in conventional hydrocarbon ionomers. The absence of those electrons means the polymer does not strongly adsorb onto platinum catalyst surfaces, so catalytic activity is preserved. Sulfonic acid groups covalently attached onto this backbone supply the proton-conducting pathways, while the bulky bicyclic rings create extra free volume inside the polymer, allowing oxygen and hydrogen to diffuse more easily through the binder layer and reach the catalyst. By adjusting the ratio of sulfonated to non-sulfonated segments, the developers can dial in ionic activity and hydrophobicity to prevent electrode flooding, a persistent issue for PFAS-free ionomers when operated at high current density. Technology Description In a PEM fuel cell or water electrolyzer, the membrane electrode assembly (MEA) is the heart of the device, and the electrode ionomer inside it must simultaneously conduct protons, transport water, allow reactant gases to reach catalyst particles and bind mechanically to both the membrane and the catalyst layer. PFSA materials such as Nafion meet these requirements but carry the environmental burden associated with perfluorinated chemistries. Hydrocarbon-based sulfonated polymers offer a cleaner, lower-cost route, yet their phenyl-rich backbones tend to adsorb onto platinum and reduce catalytic activity, their gas permeability is typically low and the high sulfonic acid content needed for conductivity drives down hydrophobicity, leading to flooding under realistic operating conditions. PFAS-Free Sulfonated Poly(norbornene) Ionomeric Binders target each of these failure modes simultaneously by replacing the phenyl-heavy architecture with a sulfonated poly(norbornene) platform. Advantages Contains no PFAS, helping device makers stay ahead of tightening regulations on perfluorinated chemicals Maintains catalyst activity by avoiding the platinum-adsorbing phenyl groups common in other hydrocarbon ionomers Allows higher gas permeability for improved reactant transport at the electrode Offers tunable hydrophobicity to keep electrodes from flooding during demanding operation Built on a polymer platform with demonstrated thermal stability and mechanical durability Synthesized from lower-cost, structurally tunable starting materials compared with perfluorinated chemistries Market Applications Hydrogen Energy (PEM fuel cells, water electrolyzers, reversible fuel cells) Transportation (fuel cell vehicles, heavy-duty trucking, maritime auxiliary power) Stationary Power and Backup (data centers, telecom, distributed generation) Industrial Gas and Chemicals (hydrogen production for refining, ammonia, steel) Aerospace and Defense (unmanned systems, portable power packs) TRL 4 U.S. Patent pending LA-UR-26-25232 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 licensing@lanl.gov. 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

Comparable award range

Historical award values for work matched by the fixed rubric—not an estimate of this opportunity.

No past awards scored highly enough to form a comparable range.

Comparable awards

The match score is decomposed so each comparison can be challenged.

No comparable awards are attached to this notice.

Amendment history

A version is preserved whenever the normalized notice contents change.

VersionNotice typeObservedResponses dueContent hash
1Special NoticeAug 10, 2026Jan 7, 2026, 12:00 AM UTC737176059c2d60ad
2Special NoticeAug 28, 2026Jan 7, 2026, 12:00 AM UTC7e574339d1a5e979

Record provenance

Field-level lineage for the current opportunity version.

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Sources and method

Figures on this page are computed from public federal award records. Numbers are never estimated or generated; where a figure is withheld, the reason is stated rather than filled in.

  1. 1Notice fields come from the SAM.gov contract opportunities record last seen Aug 29, 2026. SAM.gov remains authoritative.

Note 1 covers the solicitation record. No synthetic FAQ or inferred solicitation value is published.

TECHNOLOGY LICENSING OPPORTUNITY: PFAS-Free Sulfonated Poly(norbornene) Ionomeric Binders — federal contract opportunity · BidBenchmark