Contacts, documents and full notice history are available with a subscription.
Special Notice Expired 1 notice

TECHNOLOGY/BUSINESS OPPORTUNITY High Throughput Materials Screening IL-13738

Solicitation IL-13738 Copied Notice ID baf03416c6494e8683f5959810b65801 Copied ENERGY, DEPARTMENT OF — LLNS – DOE CONTRACTOR
SAM.gov
Posted
Jul 07, 2025
Deadline
Aug 07, 2025
Set-aside
None
NAICS
333248
PSC
1015

Summary

AI-generated · Aug 24, 2025

LLNL seeks industry collaboration to develop and commercialize its Automated High-Throughput Materials Optimization Active-Mixing Direct-Ink-Write (DIW) Platform. The system combines active-mixing DIW additive manufacturing, in-situ characterization, and an active-learning experimental planner to create a closed-loop polymer screening platform capable of handling materials with highly disparate viscosities, enabling rapid, high-throughput discovery and optimization of polymer formulations for targeted properties and applications (e.g., advanced polymer electrolytes and 3D-printed inks).

This is not a procurement. Interested companies should submit a statement of interest that includes the company name and address, a point of contact, and a description of relevant capabilities to commercialize the technology. Include a subject heading with the Notice ID/title, directed to LLNL’s Innovation and Partnerships Office, with licensing conducted under nondisclosure policies. LLNL has related patent filings and invites potential industry partners to move the technology from the lab to the market under licensing arrangements.

Opportunity: Lawrence Livermore National Laboratory (LLNL), operated by the Lawrence Livermore National Security (LLNS), LLC under contract no. DE-AC52-07NA27344 (Contract 44) with the U.S. Department of Energy (DOE), is offering the opportunity to enter into a collaboration to further develop and commercialize its Automated High-Throughput Materials Optimization Active-Mixing DIW Platform. Background: Polymer materials formulation and optimization has been generally limited to mixing by hand, as polymers have a wide range of viscosities. A high throughput approach is therefore needed to enable faster screening of polymers optimized for targeted applications. There currently exists systems that mix multi-materials with disparate viscosities. If these systems are integrated with an in-situ characterization capability combined with machine learning experimental planning systems, an all-in-one polymer optimization and screening platform could be developed that can facilitate high-throughput materials development. Description: The platform has three major components: (1) active-mixing direct-ink-write (2) in situ characterization substrates or probes (3) active learning experimental planning system. Active-mixing direct ink write (DIW) additive manufacturing enable mixing of materials with highly disparate viscosities, from liquids to pastes. By coupling this mixing system with in-situ characterization methods with machine learning experimental planning systems, LLNL researchers developed an automated platform for materials discovery and optimization. Machine learning models take the data from the DIW AM prints and use it to dictate the next batch of films to be printed, homing in on the formulation that achieves the best desired property required for the target application. While active mixing DIW has already been developed [Harvard s U.S. Patent No 10,071,350], the novelty of this LLNL invention is the integrated system of characterization capabilities, machine learning, and experimental planner, making it a closed-loop polymer screening system. Advantages/Benefits: Value Proposition: High-throughput (scale-up) polymer materials development System Flexibility: Capable of handling complex hybrid formulations, including, but not limited to, solvents, monomers, oligomers, polymers, and additives. Additives can be liquid or solid. Can vary the material composition during the printing process. Potential Applications: Automated high-throughput screening of increased ionic conductivity polymer electrolytes Optimization of 3D printing inks Polymer materials optimization and screening Development Status: Current stage of technology development: TRL ? 0-2 ? 3-5 ? 5-9 LLNL has filed for patent protection on this invention. U.S. Patent Application No. 20240091808 High Throughput Materials Screening published 3/21/2024 U.S. Patent Application No. 20240096454 High Throughput Materials Screening published 3/21/2024 LLNL is seeking industry partners with a demonstrated ability to bring such inventions to the market. Moving critical technology beyond the Laboratory to the commercial world helps our licensees gain a competitive edge in the marketplace. All licensing activities are conducted under policies relating to the strict nondisclosure of company proprietary information. Please visit the IPO website at https://ipo.llnl.gov/resources for more information on working with LLNL and the industrial partnering and technology transfer process. Note: THIS IS NOT A PROCUREMENT. Companies interested in commercializing LLNL's Automated High-Throughput Materials Optimization Active-Mixing DIW Platform should provide an electronic OR written statement of interest, which includes the following: Company Name and address. The name, address, and telephone number of a point of contact. A description of corporate expertise and/or facilities relevant to commercializing this technology. Please provide a complete electronic OR written statement to ensure consideration of your interest in LLNL's Automated High-Throughput Materials Optimization Active-Mixing DIW Platform. The subject heading in an email response should include the Notice ID and/or the title of LLNL s Technology/Business Opportunity and directed to the Primary and Secondary Point of Contacts listed below. Written responses should be directed to: Lawrence Livermore National Laboratory Innovation and Partnerships Office P.O. Box 808, L-779 Livermore, CA 94551-0808 Attention: IL-13738

From Special Notice posted on Jul 07, 2025

Notice history

1
  1. Special Notice LATEST Posted Jul 07, 2025

Details

Solicitation number IL-13738
Notice ID baf03416c6494e8683f5959810b65801
Notice type Special Notice
Product / Service (PSC) 1015
NAICS 333248
Place of performance Livermore, California
Archive date Aug 22, 2025

Award Information

Not yet awarded

Documents

No files available

View on SAM.gov

Contacts

primary
Austin Smith

Email

Phone

secondary
Charlotte Eng

Email

Phone

Agency

ENERGY, DEPARTMENT OF
ENERGY, DEPARTMENT OF
LLNS – DOE CONTRACTOR

Place of Performance

Livermore, California
USA

Dates

Posted Jul 07, 2025 1 year ago
Last Updated Aug 06, 2026 1 day ago
Due Aug 07, 2025 1 year ago