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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. Topic CS5-10a: Computationally Mediated Tomography system for in situ TEM

    SBC: Protochips, Inc.            Topic: C5510a

    C55-10a-270371Electron Tomography (ET) is used to visualize nanostructures in three dimensions, but long acquisition times make it unsuitable for the study of fast in situ reactions and dose-sensitive materials. The limiting factor for fast acquisition of ET data is stage instability causing drift in all directions while tilting. Because ET requires many images taken within the exact same field of ...

    SBIR Phase I 2023 Department of Energy
  2. Integrated Characterization and Modeling of Subsurface Properties Critical to Geothermal Energy Storage in Sedimentary Reservoirs

    SBC: NEW ENGLAND RESEARCH, INC.            Topic: C5513a

    C55-13a-270397To date, no integrated characterization and predictive modeling workflow has been proposed to optimize Geothermal Battery Energy Storage (GBES) systems in sedimentary formations. Of particular concern is the near wellbore formation integrity of GBES systems that are subject to Thermal-Hydraulic-Mechanical-Chemical (THMC) loading conditions: during injection, storage, and production c ...

    SBIR Phase I 2023 Department of Energy
  3. Reaction shaper: Topological and geometric toolkit for storing and analyzing heterogeneous data

    SBC: GEOMETRIC DATA ANALYTICS INC.            Topic: C5505a

    C55-05a-270492-AbstractChemical reactions are rarely performed in isolation. Most real-world applications involve chemical reaction networks in which many simultaneous chemical reactions of many species occur. Advances in high-performance computer simulations and laboratory automation provide an increasingly detailed picture of these chemical reaction networks, but the underlying representation in ...

    SBIR Phase I 2023 Department of Energy
  4. Argon-Selective CMS for High Purity Oxygen Production

    SBC: SUSTEON INC            Topic: C5514a

    U.S. Department of Energy (DOE) is developing innovative, flexible, and small-scale (1-5 MW), modular gasification systems for converting diverse types of US domestic energy resources into value-added products with greatly reduced or negative CO2 emissions. Production of high purity (>95%) oxygen at modular scale is an enabling technology for successful development and deployment of these systems. ...

    SBIR Phase I 2023 Department of Energy
  5. Semiconductor Device Simulation Software with Monte Carlo Based Thermal Transport Modeling

    SBC: ADVANCED COOLING TECHNOLOGIES INC            Topic: C5501b

    Current semiconductor device simulation software adopts Fourier’s law to perform the thermal transport modeling. However, Fourier’s law will become invalid at micro/nano-scale, which can cause a large discrepancy in the thermal and electrical performance between the simulation results and the actual application. To improve the current state-of-the-art, a new semiconductor device simulation sof ...

    SBIR Phase I 2023 Department of Energy
  6. Ultra-Rad-Hard Full-HD Image Sensor and Camera for Rare Isotope Beam Facilities

    SBC: ALPHACORE INC            Topic: C5523e

    The Department of Energy requires a compact digital imaging system (or systems) for beam and target system diagnostic applications. Capable of HD resolution, motion deblurring, object/event detection/identification, object tracking, and data compression, the proposed system is meant to resolve current camera lifespan inadequacies while also boosting energy level resistance. This problem is being a ...

    SBIR Phase I 2023 Department of Energy
  7. Structural Components with Corrosion Resistant Surface Layers for Advanced Nuclear Reactor Systems

    SBC: ADVANCED CERAMICS MANUFACTURING, LLC            Topic: C5512a

    Advanced high temperature nuclear reactor systems that utilize liquid coolants such as molten fluorides require structural components that are also corrosion resistant to the coolant. The current structural components approved for use in ASME Code Sec III Div 5 have insufficient corrosion resistance for long lifetimes. This problem will be addressed by the incorporation of thick, corrosion resista ...

    SBIR Phase I 2023 Department of Energy
  8. Light disc microscopy

    SBC: MIZAR IMAGING LLC            Topic: C5328a

    C53-28a-271090Biological systems function across scales, with operations at nanoscales coming together to form complex macroscale communities. Thus, resolving interactions and tracking metabolic processes within living systems requires multi-scale imaging to visualize cells at the community, cellular, subcellular, and single-molecule scales. Although techniques like light sheet fluorescence micros ...

    SBIR Phase II 2023 Department of Energy
  9. Optical NMR using Diamond Quantum Sensing for Imaging Metabolic Processes in Live Cells

    SBC: ADAMAS NANOTECHNOLOGIES INC            Topic: C5328b

    C53-28b-271112Quantum enabled approaches pose new concepts for bioimaging and sensing of biological processes in living biological systems, non-destructively in real time. Processes of interest for bioenergy include measuring enzyme function within cells, tracking metabolic pathways in vivo, monitoring the transport of materials into and out of cells or across cellular membranes and, measuring sig ...

    SBIR Phase II 2023 Department of Energy
  10. Rapid and Tunable Cooling Technology for Vacuum Furnaces

    SBC: ADVANCED COOLING TECHNOLOGIES INC            Topic: C4918a

    C49-18a-271181The need for high-temperature furnaces for neutron scattering experiments has been increasing considerably. One of the major limiting factors of these furnaces is the cooling rate. Currently, the vacuum furnace relies on radiation to dissipate heat and takes at least 2 hours to cool the furnace low enough to safely open for a sample change. This results in significant limitations of ...

    SBIR Phase II 2023 Department of Energy
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