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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. Low Cost, Efficient Microchannel Plasma Ozone System for Point of Use Water Treatment

    SBC: EP Purification, Inc.            Topic: A

    A team at EP Purification has performed research for the development and commercialization of low-cost microchannel plasma reactor modules capable of efficiently producing ozone for water treatment and other environmental applications in a slim form factor and size. The conservation of water resources for human consumption is a growing national priority. Ozone is a unique purification agent as it ...

    SBIR Phase II 2014 Environmental Protection Agency
  2. Processing of Green Solvents

    SBC: COMPACT MEMBRANE SYSTEMS, INC.            Topic: B

    Solvents are valuable processing tools in the chemical and related industries used to enhance mass transfer, heat transfer and processing aids not used in the final product. Solvents are very valuable but cause significant problems with volatility and associated emissions. Manufacturing processes that utilize green technology or solvents for process improvement and reduced emissions are very desir ...

    SBIR Phase II 2014 Environmental Protection Agency
  3. Direct Conversion of Municipal and Agricultural Wastes to Biodiesel and Ethanol Utilizing a Unique Extremophilic Fungus

    SBC: SUSTAINABLE BIOPRODUCTS LLC            Topic: C

    Sustainable Bioproducts LLC’s proposed research will further develop an efficient, economical and scalable process for conversion of municipal solid wastes and agricultural wastes to biodiesel and ethanol. The technology is based on use of a novel extremophilic fungus, named strain MK7, which thrives in pH 1.2 bison dung ingeothermal habitats of Yellowstone National Park. The United States produ ...

    SBIR Phase I 2014 Environmental Protection Agency
  4. Enhanced Membrane System for Recovery of Water from Gas-Liquid Mixtures

    SBC: COMPACT MEMBRANE SYSTEMS, INC.            Topic: H303

    Gas-Liquid separation is an acute microgravity problem. Existing devices use centrifugal motion on microporous membranes to separate the two phases. Centrifugal devices consume electricity and are prone to failure. The microporous membranes easily foul and have significant water loss. Novel membrane devices are proposed. Membranes can simultaneously disengage gases from gas-liquid dispersion and d ...

    SBIR Phase I 2014 National Aeronautics and Space Administration
  5. Integrated Computational System for Electrochemical Device Design and Simulation

    SBC: ILLINOISROCSTAR LLC            Topic: Z104

    Illinois Rocstar LLC proposes to develop and demonstrate the use of an integrated computational environment and infrastructure for electrochemical device design and simulation: ICED. This environment integrates the user's personal computational environment with high performance simulation applications for materials and processes. The current state of the art for electrochemical device design utili ...

    SBIR Phase I 2014 National Aeronautics and Space Administration
  6. High Power Betavoltaic Technology

    SBC: MICROLINK DEVICES INC            Topic: Z2001

    The proposed innovation will dramatically improve the performance of tritium-powered betavoltaic batteries through the development of a high-aspect ratio, expanded surface area p/n junction composed of indium gallium phosphide. The enhanced surface area features will be built using reactive ion etch (RIE) modified germanium substrates via metalorganic chemical vapor deposition (MOCVD). The propo ...

    SBIR Phase I 2014 National Aeronautics and Space Administration
  7. CubeSat High Impulse Propulsion System (CHIPS)

    SBC: CU AEROSPACE L.L.C.            Topic: S303

    CU Aerospace proposes to perform design, fabrication, and ground test validation of a nanosat primary propulsion subsystem using non-toxic R134a propellant. Our approach, called CubeSat High Impulse Propulsion System (CHIPS), leverages CU Aerospace's very high efficiency warm-gas variant of an innovative resistojet that significantly boosts the performance of standard cold-gas systems with the exi ...

    SBIR Phase II 2014 National Aeronautics and Space Administration
  8. Development of Advanced Anti-Reflection Coatings for High Performance Solar Energy Applications

    SBC: MICROLINK DEVICES INC            Topic: S302

    MicroLink Devices will increase the efficiency of multi-junction solar cells by designing and demonstrating advanced anti-reflection coatings (ARCs) that will provide a better broadband spectral response than that of conventional anti-reflection coatings. Advanced coatings of this nature are needed to realize the full performance of the forthcoming generation of multi-junction solar cells, which ...

    SBIR Phase II 2014 National Aeronautics and Space Administration
  9. Highly Conductive Polymer Electrolyte Impregnated 3d Li-Metal Negative Electrode

    SBC: Xerion Advanced Battery Corp.            Topic: Z102

    XABC (Xerion Advanced Battery Corp) proposes a novel anode with three unique features, each designed to 1) control or 2) prevent dendrite growth. The first feature is a 95% porous electrode architecture. This electrode is an open-cell, nanostructured conductive foam whose internal structures are conformal coated with lithium metal. Dendrites growing outward from an internal pore surface will propa ...

    SBIR Phase I 2014 National Aeronautics and Space Administration
  10. High-Efficiency, Radiation-Hard, Lightweight IMM Solar Cells

    SBC: MICROLINK DEVICES INC            Topic: S301

    Future NASA exploration missions require high specific power (>500 W/kg) solar arrays. To increase cell efficiency while reducing weight and maintaining structural integrity, we propose an approach to cell design that involves the use of quantum dots and epitaxial lift-off. In the near term, this approach will allow us to improve on what are currently the best space solar cells available in term ...

    SBIR Phase I 2014 National Aeronautics and Space Administration
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