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This Government Contract opportunity from Department Of Energy was posted on June 17, 2026. The submission period has ended. Browse the details below for market research, or find similar active opportunities.

Technology Licensing Opportunity: Controlled SPAN Electrode Synthesis for and High-Performance Energy Storage

Closed
BA-1678Federal

Contract Overview

Solicitation details, issuing organization, response deadlines, documents, and interested companies for this government contract opportunity.

Active Opportunities Like This One

NAICS: 335910
New
DIBBS
BATTERY ASSEMBLY
Solicitation # SPE7L7-26-Q-2417
The Defense Logistics Agency Land and Maritime is soliciting quotations for the procurement of two battery assemblies, identified by NSN 6140-01-664-6369, under solicitation SPE7L7-26-Q-2417. The required delivery timeframe is 60 days after receipt of order, with the place of performance located at FPO 09592. Award will be determined based on the best value to the government, evaluating technical acceptability, price, and past performance regarding offered delivery. This contract carries stringent security and regulatory requirements, including CMMC Level 2 certification and compliance with DFARS 252.204-7012 for safeguarding covered defense information. Technical data is subject to ITAR and EAR export controls, requiring contractors to have approved US/Canada Joint Certification Program certification and completed specific DLA export-control training. Additionally, the items are classified as hazardous materials, requiring the submission of Material Safety Data Sheets and certification via HAZDEC forms in accordance with FED STD 313D. Packaging and marking must adhere to MIL-STD-2073-1E Level B (Pack Code Q) and MIL-STD-129. Inspection and acceptance will occur at the origin, with DCMA inspection limited to kind, count, and condition. Invoicing and payment processing must be conducted electronically through the Wide Area WorkFlow system.
Defense Logistics Agency

POSTED

about 12 hours ago

DEADLINE

in 9 days
NAICS: 335910
New
DIBBS
61--BATTERY,STORAGE
Solicitation # SPE7L7-26-Q-2412
The Defense Logistics Agency, through DLA Land and Maritime, has issued Request for Quotations SPE7L7-26-Q-2412 for the procurement of 100 nickel-cadmium wet storage batteries (NSN 6140-01-241-2296). These batteries are specified as wet, discharged, and spillable, with a non-extendable shelf life of 36 months. Approved sources include Aerodesign, Inc. (P/N AD-31004-04C) and Marathonnorco Aerospace, Inc. (P/N 31004-04C). The items are to be delivered to the Royal Saudi Air Force within 60 days after the order date. This is a fixed-price solicitation where award will be based on the best value to the government, evaluating technical conformity, past performance, and offered delivery time. Because the batteries are classified as corrosive materials (UN2795), the contractor must strictly adhere to hazardous materials regulations, including ICAO, IMDG, 49 CFR, and AFJMAN 24-204. Packaging must comply with MIL-STD-2073-1E Level B, Pack Code Q, using 4G fiber-board boxes. Inspection will be conducted by DCMA at the distributor or OEM site, with acceptance occurring at the origin. Administrative requirements include the use of the Wide Area WorkFlow system for electronic invoicing and receiving reports. The contract incorporates various FAR and DFARS clauses, including the Buy American and Balance of Payments Program and strict cybersecurity reporting requirements under DFARS 252.204-7012. Quotes must be submitted electronically by the deadline of September 17, 2026.
Defense Logistics Agency

POSTED

about 17 hours ago

DEADLINE

in 5 days

AI Contract Overview

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Researchers at Idaho National Laboratory have developed a scalable, high-performance synthesis method for sulfurized-polyacrylonitrile (SPAN) electrode materials, designed to overcome manufacturing and performance limitations in lithium-sulfur and sodium-sulfur batteries. The innovation centers on a custom high-pressure reactor capable of operating at up to 3000 PSI and 450°C, which eliminates headspace, captures hazardous gases, and integrates real-time spectroscopic monitoring to ensure precise, repeatable batch production of SPAN cathodes up to 250 grams—demonstrating viability for pilot-scale manufacturing. Complementing this process is the integration of transition metal sulfides into the SPAN matrix, enhancing electrical conductivity, stabilizing sulfur utilization, suppressing polysulfide shuttling, and increasing the nominal discharge voltage beyond 1.85 V. These advancements collectively improve cycle life, energy density, and operational safety while minimizing batch-to-batch variability. The technology is targeted for commercialization in grid energy storage, electric vehicles, aerospace and defense systems, and specialty electronics where lightweight, high-capacity, and durable power sources are critical. Licensing is available through Battelle Energy Alliance–DOE Center, with no procurement or hiring activities; the focus is solely on partnering with industry entities ready to bring this technology to market.

General Info

INL developed scalable SPAN electrode production to improve lithium-sulfur battery performance.

Agency

Department Of Energy → Battelle Energy Alliance–doe CntrView Agency

NAICS

335910 - Battery ManufacturingView NAICS

Place of Performance

Idaho Falls, ID, 83401, USA

Set-Aside

NONE

Documents

(0)

No documents available

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Timeline

1 update
PhaseClosed
Posted

special-notice

Amendment 1

Contract was updated

Response Deadline

Deadline has passed

Submission Closed

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Organization & Contact Information

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AgencyDepartment Of Energy → Battelle Energy Alliance–doe Cntr
Contacts1 person available
OfficeIdaho Falls, ID, 83415, USA
Organization / Agency
Department Of Energy → Battelle Energy Alliance–doe Cntr
View Agency Profile
Office AddressIdaho Falls, ID, 83415, USA
Contacts
Javier Martinez

Full Description

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Controlled SPAN Electrode Synthesis for and High-Performance Energy Storage


Scalable production and enhanced stability through advanced reactor design and transition metal sulfide integration


Technology Summary


Researchers at Idaho National Laboratory (INL) have developed an integrated approach to producing sulfurized–polyacrylonitrile (SPAN) electrode materials at scale with improved electrochemical performance. This dual innovation combines:


  • Controlled, scalable SPAN synthesis enabled by a custom high-pressure chemical reactor with real-time monitoring and additive reagent control.
  • SPAN–transition metal sulfide composites designed to enhance conductivity, sulfur utilization, mitigate polysulfide formation, prolong cycle life, and increase nominal discharge voltage performance in lithium-sulfur and sodium-sulfur batteries.

The combined platform addresses longstanding barriers in SPAN production and performance, opening viable pathways for next-generation rechargeable batteries in grid storage, electric mobility, and defense applications.


Problem Addressed


  • Manufacturing barriers: Consistent, high quality SPAN cathode materials are difficult to produce in large batch sizes. Existing methods lack precision, scalability, and safety.

  • Commercial gap: Battery developers and manufacturers lack access to a reliable process to enable large scale SPAN production needed to advance lithium-sulfur and sodium-sulfur chemistries.

Solution


INL’s approach provides both a production pathway and a material enhancement strategy:


Reactor-based controlled synthesis


  • Operates under high pressures (up to 3000 PSI) and high temperatures (up to 450°C) with the ability to eliminated headspace for safety and yield.
  • Captures noxious gases and allows gas reagent introduction.
  • Integrates electronic controls, real-time spectroscopy for product feedback, and reproducibility.

SPAN–metal sulfide composites


  • Incorporation of transition metal sulfides into the SPAN matrix.
  • Optimized distribution and morphology of sulfides to stabilize cycling and improve conductivity.
  • Potential to increase operating voltage beyond the nominal discharge of 1.85 V for traditional SPAN.

Together, these innovations offer a scalable, tunable process to deliver advanced cathode materials for next generation energy storage.


Key Advantages


  • Scalability: Controlled batch production demonstrated up to 250 g, supporting pilot-scale manufacturing.
  • Repeatable Material Quality: Batch to batch variability minimized to produce consistent, high-quality material.
  • Safety and efficiency: High-pressure containment, gas capture, and headspace elimination reduce operational risks.
  • Process versatility: Gas reagent introduction and real-time feedback allow tailoring of SPAN properties to specific applications.


Market Applications


  • Grid energy storage: Long-duration, cost-competitive solutions for renewable integration.
  • Electric vehicles: Higher energy density cathodes for next-generation EV batteries.
  • Aerospace and defense: Lightweight, high-capacity storage systems for mission-critical applications.[PB3] 
  • Specialty electronics: Resilient cathode materials for portable and ruggedized devices.

Licensing


INL’s Technology Deployment department focuses solely on licensing intellectual property and collaborating with industry partners who can commercialize our innovations.


We do not engage in purchasing, procurement, or hiring external services for technology development. Our objective is to connect with companies interested in licensing and bringing our technologies to market.

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Other Guided Missile and Space Vehicle Parts and Auxiliary Equipment Manufacturing

POSTED

about 17 hours ago

DEADLINE

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View Details
NAICS: 335910
Federal
Long-Duration Energy Storage (LDES) Battery System
Solicitation # INL-26-050
Idaho National Laboratory (INL) and Argonne National Laboratory (ANL) have issued an Expression of Interest (EOI) under solicitation INL-26-050 to identify qualified vendors for non-lithium, rechargeable electrochemical long-duration energy storage (LDES) battery systems. The objective is to acquire systems for benchmark performance testing, specifically requiring two modules with at least 10 kW continuous power and 100 kWh usable energy, and one full-scale system with at least 100 kW continuous power and 1,000 kWh usable energy. All systems must be capable of at least 10 hours of continuous discharge, operate between 0 to 50 degrees Celsius, and possess a minimum field lifetime of 15 years. Acceptable technologies must be pre-built and exclude lithium-ion, lithium metal, lead-acid, and redox flow batteries. Technical requirements include a 3-phase 480 VAC AC interface and an isolated 800-1500 VDC DC interface, with support for SCADA protocols such as Modbus TCP/IP, DNP3, or IEC 61850. Systems must comply with NFPA 855, UL 9540/9540A, and NEC/IEEE standards, and include comprehensive hazard assessments and safety systems. Deliverables involve 70%, 90%, and final design packages, along with Factory and Site Acceptance Testing reports. Modules are to be delivered to INL within approximately three months of design acceptance, while the full-scale system is destined for ANL within six months. This EOI serves as a preliminary screening process to inform a future Request for Proposal (RFP); interested vendors must submit a consolidated response by September 24, 2026, to Chase Egbert.
Battery Manufacturing

POSTED

19 days ago

DEADLINE

in 13 days
View Details

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