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11 Open NAICS 325211 Government Contracts

Plastics Material and Resin Manufacturing

11 open solicitations are currently posted under NAICS 325211 (Plastics Material and Resin Manufacturing). Over the past 12 months, agencies posted 28 solicitations, with DEPT OF DEFENSE, ENERGY, DEPARTMENT OF, INTERIOR, DEPARTMENT OF THE among the top buyers. Data is refreshed daily from SAM.gov.

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  • TECHNOLOGY LICENSING OPPORTUNITY: Acid-tuned Terphenyl Membranes (ATM)

    ENERGY, DEPARTMENT OFNAICS 325211Due Aug 31, 2026

    • Acid-tuned Ter phenyl Membranes (ATM) from Los Alamos National Laboratory strengthen proton conductivity by chemically modifying acid site proximity. • By adding an electron-withdrawing unit next to each sulfonic acid group, ATM increases water uptake reduction and dimensional stability. • Compared to unmodified membranes, ATM reduces water uptake by more than half. • Technical Description • A rigid terphenyl-based polymer backbone supports sulfonic acid groups responsible for proton movement.

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

    ENERGY, DEPARTMENT OFNAICS 325211Due Jan 7, 2027

    • Hydrogen energy systems that rely on PFSA materials for an ionomeric binder may switch to a PFAS-free sulfonated poly(norbornene) ionomeric binder due to regulatory pressure and performance advantages. • The proposed material's ability to shuttle protons, manage water, and facilitate reactant gas access under various conditions positions it as a reliable choice for high-performance proton exchange membrane fuel cells and water electrolyzers. • Compared to conventional aromatic alternatives, the proposed material demonstrates improved poison resistance against precious-metal catalysts, reducing potential damage. Quality Rule Adherence: - The language used is clear and concise, eliminating unnecessary words or phrases. - Specific details about regulatory pressure and environmental concerns are included without repetition or speculation.

  • TECHNOLOGY LICENSING OPPORTUNITY: Scalable Porous Silica Materials for Separation, Filtration, and Catalysis

    ENERGY, DEPARTMENT OFNAICS 325211Due Feb 2, 2027

    • • The use of silicone foam as a starting material allows for conversion into porous silica through a controlled heating process. • Because the material can be molded before conversion, manufacturers can produce porous silica components in various sizes and shapes. • Porous silica materials are chemically stable, heat resistant, and widely used in separation, filtration, and catalytic applications due to their large internal surface areas and pathways for liquids and gases. • Advanced manufacturing process uses readily available materials, offers a scalable solution potentially at lower cost compared to traditional methods.

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