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The Award database is continually updated throughout the year. As a result, data for FY22 is not expected to be complete until September, 2023.

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.

  1. A Comprehensive Web Infrastructure for Standardizing, Storing, and Launching Density Functional Calculations of Materials and Chemical Compounds

    SBC: Citrine Informatics, Inc.            Topic: 09a

    Density functional theory is used by many researchers funded by the Department of Energy as a method for predicting the behavior of chemicals and materials used in energy applications. However, results of these calculations are often not standardized and, even when they are, expert-level understand of the methods is needed in order to properly perform a simulation. The energy research community a ...

    STTR Phase I 2016 Department of Energy
  2. Wide Angle Neutron Spin Echo Device

    SBC: ADELPHI TECHNOLOGY INC            Topic: 12a

    The Neutron Spin Echo (NSE) method has provided unique information about the dynamics of soft materials, including confirmation of the de Gennes model of polymer reptation, and quantitative measurement of the bending constants of various membranes. In almost all cases these measurements have been made at small neutron scattering angles, where structural correlations with length scales between 10 n ...

    STTR Phase I 2018 Department of Energy
  3. Axisymmetric and Focusing Analyzers to Enable Efficient Powder and Residual Stress Neutron Diffractometers

    SBC: ADELPHI TECHNOLOGY INC            Topic: 12a

    Although thermal and cold neutron scattering is widely used, and is critical for success in many areas of materials science and engineering, relatively low neutron fluxes severely limit applications of not only laboratory neutrons generators, but also large national neutron facilities. State-of-the-art thermal and cold neutron sources are large expensive national facilities, which serve diverse co ...

    STTR Phase I 2018 Department of Energy
  4. Development of breeding strategies for Nitzschia sp.

    SBC: GLOBAL ALGAE INNOVATIONS, INC.            Topic: 08c

    Renewable algae fuels are the source of energy for the future. It was demonstrated that algae fuels can be produced and they were successfully used in demonstration airplane flights and cars. The cost of algae oil is still high and cannot compete with fossil fuels. High algae growth and ability to accumulate oil fast are the key factors that will make algae based biofuels affordable. Diatoms are t ...

    STTR Phase I 2018 Department of Energy
  5. Development of a breeding system in Chlamydomonas moewusii for improved production strains

    SBC: GLOBAL ALGAE INNOVATIONS, INC.            Topic: 08c

    For economically viable large-scale production of microalgae based food and biofuel to become a reality, significant improvements in algal productivity need to be achieved. With current regulatory guidelines, large scale outdoor cultivation of microalgae for these products restricts the use of transgenic algal strains, which in the laboratory, have thus far been the primary strategy taken to effec ...

    STTR Phase I 2018 Department of Energy
  6. Predictive Analytics-Based US Inland Waterways Voyage Planning Analysis Tool (VSAT)

    SBC: Trabus            Topic: 01a

    Trabus Technologies (TRABUS), working with Louisiana State University (LSU), will develop a predictive analytics-based US Inland Waterways Voyage Planning Analysis tool to help vessel traffic managers, tow boat pilots, and river lock operators maximize transport logistic resources. This tool will use current and forecasted hydrographic, meteorological, lock status, and Marine Safety Information to ...

    STTR Phase I 2018 Department of Energy
  7. Low-cost, time-resolved chemical characterization of atmospheric aerosols

    SBC: Aerosol Devices Inc.            Topic: 23b

    Currently the chemical composition of atmospheric particulate matter is measured either by off-line analyses of time-integrated filter samples, or by in-situ instruments requiring near-constant operator oversight. These measurement approaches result in sparse or limited data coverage. Despite the critical role of composition on the health and environmental impacts of particulate matter, there exis ...

    STTR Phase I 2018 Department of Energy
  8. A microfluidic ice nucleating particle counter for continuous measurements from small aerial platforms

    SBC: Handix Scientific Inc.            Topic: 23a

    Quantifying atmospheric aerosol, clouds and precipitation processes are critical needs for understanding and interpreting Earth’s changing energy budget, is a DOE objective, and is of broader benefit to the public. Specifically, the formation of ice in the atmosphere depends on the nature and abundance of ice nucleating particles, and has major implications for precipitation and cloud interactio ...

    STTR Phase I 2018 Department of Energy
  9. Expanding Access to Electronic Property Modeling in Scintillator Crystal Growth and Development

    SBC: Radiation Monitoring Devices, Inc.            Topic: 03a

    The development of radiation detection materials would benefit with greater access to computational models that relate physical traits seen in manufacture with complex energy transitions occurring in the material that control operating performance. However, the HPC requirements behind these models remain beyond the reach of most businesses involved in this small yet vital field impacting National ...

    STTR Phase I 2018 Department of Energy
  10. Compact laser hygrometer for in-situ measurements of water vapor from small unmanned aerial vehicles

    SBC: Physical Sciences Inc.            Topic: 17a

    The rate of climate change in the Arctic is larger than elsewhere on Earth. The Arctic has unique and complex couplings and feedbacks between the surface and the atmosphere that in turn modify the radiative balance there differently than elsewhere. Current understanding holds that an increase in downwelling long wave radiative flux, driven by increased water vapor and clouds, may be accelerating c ...

    STTR Phase I 2016 Department of Energy
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