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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. Membranes and Materials for Energy Efficiency; Subtopic c Title: Development of Corrosion Resistant Carbon Support for Ultra-low PGM Catalysts

    SBC: Greenway Energy LLC            Topic: 15c

    Carbon is used as a support material for both anode and cathode catalysts in state-of-the-art polymer electrolyte membrane (PEM) fuel cells. Carbon support is susceptible to corrosion under the cathode operating conditions such as presence of oxygen and water, low pH, and high potential at the cathode interface. Corrosion of state-of-the-art carbon supports is inevitable, which leads to platinum c ...

    SBIR Phase I 2017 Department of Energy
  2. Membranes and Materials for Energy Efficiency – Metal Hydride Materials for Compression Metal hydride material development for high efficiency and low cost hydrogen compressors

    SBC: Greenway Energy LLC            Topic: 15d

    To make the hydrogen economy realistic at a large scale, one of main technical issues to be overcome is relative to the high pressure hydrogen delivery. Traditional hydrogen compressors suffer from high operating and maintenance costs and high capital investment. Metal hydride based compressors represent a realistic alternative that can potentially overcome all of the technical hurdles of the trad ...

    SBIR Phase I 2017 Department of Energy
  3. Wide-Bandgap Microstructured Semiconductor Neutron Detector

    SBC: RADIATION DETECTION TECHNOLOGIES, INC.            Topic: 26b

    There is a need for high-efficiency, radiation hard, high-temperature neutron detectors at nuclear reactor and nuclear physics facilities. Nuclear physic experiments require neutron detectors that are robust, compact, low-power, and have high-sensitivity, while stably operating in harsh environments, e.g., high-temperature and high radiation-dose. Wide-bandgap semiconductors will tolerate such env ...

    SBIR Phase I 2017 Department of Energy
  4. Multiscale Modeling of Supercritical Combustion with Two-Level Simulation on Adaptive Beamlets

    SBC: SYMPLECTIC RESEARCH, INC.            Topic: 17d

    Supercritical carbon dioxide (sCO2) based power cycles is a promising technological venue that can potentially increase the power cycle efficiency in power plant operations. In addition to higher efficiency, the direct-fired sCO2 cycle, in particular, offers other benefits including the facilitation of CO2 capture and sequestration, and potentially simpler designs. In order to develop the next-gen ...

    SBIR Phase I 2017 Department of Energy
  5. Broad Spectrum Absorption-Fluorescence Method for Determining Adsorption Capacity of Fly Ash

    SBC: PHOSPHORTECH CORP            Topic: 171FH1

    Interference of unburned and activated carbon in fly ash with air-entraining admixtures (AEA’s) in fresh concrete mixtures is a major concern in the concrete industry. Therefore, a rapid and accurate measurement of adsorption capacity of fly ash is of great interest to this industry. In this project, a new method is suggested, which can qualitatively and quantitatively measure different surfact ...

    SBIR Phase I 2017 Department of Transportation
  6. Hybrid Down-Converting Structures for Solid State Lighting

    SBC: PHOSPHORTECH CORP            Topic: 07a

    Nanostructures will initiate new paradigms in the conservation and generation of energy. Higher efficiency lamps will be produced that will revolutionize the US lighting industries, by providing competitive technologies that will significantly reduce global energy use and environmental pollution.

    SBIR Phase II 2017 Department of Energy
  7. New Approaches to Improved PEM Electrolyzer Ion Exchange Membranes

    SBC: TETRAMER TECHNOLOGIES LLC            Topic: 13a

    This technology will significantly lower the energy cost for production of industrial gases, transportation fuels, and renewable energy and will aid in securing the US microgrid through improved backup power energy. This knowledge based commercial enterprise will not only create > 100 high paying jobs that will stay in the US, but also demonstrate expanded American leadership in high technology pr ...

    SBIR Phase II 2017 Department of Energy
  8. Developing Cyber Tools For HPC Environments and HPC Cloud Workloads

    SBC: Z SOFTECH SOLUTIONS INC            Topic: 03a

    The broader impact/commercial potential of this Small Business Innovation Research (SBIR) Phase I project is to help system administrators, security managers, Security and Risk analysts and CISO’ professional and institutions to improve the security of High Performance Computing systems by providing enhancement to the Flower Cyber tool to ensure continuous monitoring, situation awareness, endpoi ...

    STTR Phase I 2017 Department of Energy
  9. ADVANCED MANUFACTURING OF MICRO POCKET FISSION DETECTOR (MPFD)

    SBC: RADIATION DETECTION TECHNOLOGIES, INC.            Topic: 29a

    A need exists for advanced instrumentation neutron-flux mapping with in the reactor-core for the Transient REActor Test (TREAT) facility and Advanced Test Reactor (ATR) experiments supporting advanced nuclear material testing. In addition, many U.S. research reactors and industrial power nuclear-reactors would benefit from in-core neutron-flux monitoring. Here it is proposed to research advanced M ...

    SBIR Phase I 2017 Department of Energy
  10. Microstructured Semiconductor Neutron Detector Arrays for Neutron Scattering Measurements

    SBC: RADIATION DETECTION TECHNOLOGIES, INC.            Topic: 09a

    The objective of this project is to design and build a high-efficiency neutron detector array consisting of 3000 pixels, with each pixel being 100 microns wide and 4 cm tall, all based on the microstructured semiconductor neutron detector (MSND) technology. The MSND technology resulted in over 40 publications, three allowed patents, one patent pending, and recently received an R & amp;D 100 award ...

    SBIR Phase I 2013 Department of Energy
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