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The Award database is continually updated throughout the year. As a result, data for FY24 is not expected to be complete until March, 2025.

Download all SBIR.gov award data either with award abstracts (290MB) or without award abstracts (65MB). A data dictionary and additional information is located on the Data Resource Page. Files are refreshed monthly.

The SBIR.gov award data files now contain the required fields to calculate award timeliness for individual awards or for an agency or branch. Additional information on calculating award timeliness is available on the Data Resource Page.

  1. Improved Volatile and Semi-volatile Radionuclide Off-Gas Management

    SBC: MAINSTREAM ENGINEERING CORP            Topic: 1

    The capture and storage of volatile and semi-volatile radionuclides from aqueous reprocessing of used nuclear fuel (UNF) represent over 10% of capital costs and a significant fraction of operating expenses. While the current reprocessing schemes can capture, separate, and store the byproducts, they require substantial consumables or extreme temperatures (e.g., cryogenic distillation) and create si ...

    SBIR Phase I 2023 Department of EnergyARPA-E
  2. Proposed Project Title Atlantis AI Based Long Range Space Weather Prediction System

    SBC: Atlantis Industries, Inc.            Topic: 95

    To date, no realizable method of predicting the occurrence or magnitude of a Solar Energetic Particle (SEP) event has been developed. There are multiple models currently available in the Community Coordinated Modeling Center (CCMC) through Goddard Space Flight Center that attempt to provide timely and accurate event propagation (e.g.MAG4, Enlil, and SEPMOD). None of these have yet achieved the goa ...

    SBIR Phase I 2023 Department of CommerceNational Oceanic and Atmospheric Administration
  3. Flame-assisted Additive Manufacturing of Refractory Metals

    SBC: MAINSTREAM ENGINEERING CORP            Topic: MDA22T010

    FLame-assisted Additive Manufacturing (FLAMe) is a new method of AM in which the desired feedstock material is synthesized in a high temperature gas-phase combustion synthesis reaction and the resulting high temperature metal particles are accelerated and deposited onto a substrate in a user-defined pattern to construct a component. Gas-phase phase precursors allow for no limit on the melting poin ...

    STTR Phase I 2023 Department of DefenseMissile Defense Agency
  4. Maximizing Carbon Negativity in Next Generation Framing Materials

    SBC: Global Bamboo Technologies, Inc.            Topic: 1

    BamCore is a small and growing business that utilizes nature’s strongest and fastest growing structural fiber–timber bamboo–to deliver a prefabricated, code-compliant wall system that turns low-rise buildings into carbon sinks, while also lowering operating carbon. BamCore’s patented Prime Wall system is a bamboo-based studless wall that is stronger, greener, thermally superior, healthier, ...

    SBIR Phase II 2023 Department of EnergyARPA-E
  5. Maximizing Carbon Negativity in Next Generation Framing Materials

    SBC: Global Bamboo Technologies, Inc.            Topic: 1

    BamCore is a small and growing business that utilizes nature’s strongest and fastest growing structural fiber–timber bamboo–to deliver a prefabricated, code-compliant wall system that turns low-rise buildings into carbon sinks, while also lowering operating carbon. BamCore’s patented Prime Wall system is a bamboo-based studless wall that is stronger, greener, thermally superior, healthier, ...

    SBIR Phase II 2023 Department of EnergyARPA-E
  6. Maximizing Carbon Negativity in Next Generation Framing Materials

    SBC: Global Bamboo Technologies, Inc.            Topic: 1

    BamCore is a small and growing business that utilizes nature’s strongest and fastest growing structural fiber–timber bamboo–to deliver a prefabricated, code-compliant wall system that turns low-rise buildings into carbon sinks, while also lowering operating carbon. BamCore’s patented Prime Wall system is a bamboo-based studless wall that is stronger, greener, thermally superior, healthier, ...

    SBIR Phase I 2023 Department of EnergyARPA-E
  7. Metabolite Reference Standards to Normalize Spatial Metabolomics Across Tissue Sections

    SBC: SYGNAMAP INC            Topic: 1

    Advances in spatial metabolomic analysis of tissue biopsies using MALDI-MSI now enable the identification of numerous biochemical pathways as signatures of specific histopathology features. However, the lack of reproducibility across experimental studies without a common internal standard limits the application of MALDIMSI for drug development. SygnaMap is developing MSI-DeepPath as an innovative ...

    SBIR Phase I 2023 Department of CommerceNational Institute of Standards and Technology
  8. A Novel Advanced Manufacturing Pathway for Direct Incorporation of Metal-Organic Frameworks in Polymeric Sponges

    SBC: FRAMERGY INC            Topic: 2

    For this project, the team at Framergy, Inc. in partnership with Texas A&M University (TAMU), will analyze the feasibility of post-synthetic incorporation of metal-organic frameworks (MOFs) into polymer composites. This manufacturing method has the distinct advantage of eliminating the synthesis optimization that is often needed in in-situ growth methodologies, while also allowing for a higher de ...

    SBIR Phase I 2023 Department of CommerceNational Institute of Standards and Technology
  9. ALLVAR Alloys for Athermalizing SiC Telescopes with Reduced SWAP-C

    SBC: Thermal Expansion Solutions, Inc.            Topic: MDA21001

    The Ultimate Goal of these research efforts is to develop ALLVAR Alloy athermalizing strut components that enable size, weight, cost, lead time, and performance enhancements of SiC mirrored optical seekers that must withstand extreme exo-atmosphere, endo-atmosphere, and mechanical loading environments. ALLVAR Alloys offer a brand-new strong and ductile support structure solution that can offer low ...

    SBIR Phase II 2023 Department of DefenseMissile Defense Agency
  10. Cellulose Based Flexible Solid State High Power and High Energy Supercapacitor

    SBC: POLYMATERIALS APP, LLC            Topic: MDA19007

    PolyMaterials App, LLC (PolyMaterials) proposes to develop a supercapacitor cell suited for MDA applications after a very successful Phase I and Phase II effort addressing topic number MDA19-007, “Supercapacitor Nano-architecture Using Bio-carbon-based Materials Derived from Plant Cellulose”. The primary objective of this 2nd Phase II proposal is to transition PolyMaterials’ supercapacitor, ...

    SBIR Phase II 2023 Department of DefenseMissile Defense Agency
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