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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. 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
  2. User Location-Specific Data for Smarter Smart Grids

    SBC: ERIK PAGE & ASSOCIATES, INC.            Topic: 06b

    Society at large and DOE in particular have an interest in the continued development and refinement of a smart grid infrastructure that more efficiently and reliably matches electrical resources to demands. While technological advances in recent years have improved the smart grid, these advances have been limited by a lack of granularity of data (e.g. environmental conditions at multiple locations ...

    STTR Phase I 2018 Department of Energy
  3. Tip-based femtosecond multiphoton spectroscopy with radiative heating

    SBC: Laser Prismatics LLC            Topic: 10a

    One of grand challenges in nanoscience and nanotechnology is to achieve fundamental under- standing of the dynamic evolution of materials in actual operating environment, non-equilibrium conditions, or undergoing chemical reactions at the nanoscale. This requires forefront advances in imaging and analysis techniques that combine nanometer-scale spatial resolution, optical excitation and spectrosco ...

    STTR Phase I 2018 Department of Energy
  4. Ultrafast Electron Microscopy Module to Upgrade Existing Commercial Electron Microscopes

    SBC: Niowave, Inc.            Topic: 11a

    This project will develop a flexible longitudinal electron optical system based on high-precision radio-frequency cavities for short and intense electron bunch compressions, both in the energy and time domains. The proposed system is designed to be insertable into an existing transmission electron microscope column to upgrade its temporal resolution. Active phase-space control enables broad ranges ...

    STTR Phase I 2018 Department of Energy
  5. 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
  6. 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
  7. Novel Sulfonated Block Copolymers for Efficient Electrochemical Hydrogen Compression

    SBC: Sustainable Innovations, LLC            Topic: 17d

    According to a report by the Hydrogen Council, a global lobby set up in January 2017 by Toyota and Air Liquide that includes 27 members such as automakers Audi, BMW, Daimler, Honda and Hyundai, and energy firms Shell and Total, increasing the use of hydrogen in power, transport, heat and industry could deliver around one fifth of the total carbon emissions cuts needed to limit global warming to sa ...

    STTR Phase I 2018 Department of Energy
  8. Supercritical Treatment Technology for Water Purification

    SBC: ENVERGEX LLC            Topic: 20a

    Wastewater from oil and gas production has high total dissolved solids (TDS) and organics and needs to be treated for safe disposal or reuse. Coal-fired power plant discharges and mining effluents share similar high TDS and organic contents. This project targets the development of an energy efficient, and robust supercritical desalination technology to treat hypersaline solutions, destroying organ ...

    STTR Phase I 2018 Department of Energy
  9. Novel isotope sensor for spatially-resolved analysis of nutrient exchange in the rhizosphere Topic: 22.a. Technologies for Characterizing the Rhizosphere: Plant-Microbe-Mineral Interactions

    SBC: OPTO-KNOWLEDGE SYSTEMS INC            Topic: 22a

    Ensuring adequate agricultural productivity in the face of an increasing human population is a major concern with implications for both production of bioenergy products (Jones and Hinsinger, 2008) and global food security. Increasing agricultural productivity requires a stronger understanding of soil biogeochemical processes that impact plant nutrient availability. We propose development of an inn ...

    STTR Phase I 2018 Department of Energy
  10. An in-situ device to monitor root-soil-microbe interactions

    SBC: HI Fidelity Genetics, Inc.            Topic: 22a

    Finding better ways to measure rhizosphere properties has the potential to transform agriculture. Better understanding of the root-microbe-soil interactions that characterize the rhizosphere will help reduce fertilizer, pesticide, and herbicide inputs, improve effective carbon dioxide sequestration, enhance biofuel crop production, and lead to more efficient farms with higher profitability. But th ...

    STTR Phase I 2018 Department of Energy
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