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The Award database is continually updated throughout the year. As a result, data for FY20 is not expected to be complete until September, 2021.

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. Recovery Act- Scale-up of the Nanomanufacturing of Coated Powders for Superior Battery Electrode Materials

    SBC: ALD NANOSOLUTIONS, INC            Topic: 09b

    There is significant opportunity for energy efficiency improvements in the industrial and manufacturing sectors in the U.S., both from the production and consumption perspective. Higher energy density battery materials will play a role in both, through improved storage of electricity from renewable sources, the enabling of electric vehicles, and through the development of longer lasting, higher po ...

    STTR Phase I 2010 Department of Energy
  2. Recovery Act- Parallel Tandem Organic Solar Cells with Carbon Nanotube Sheet Interlayers

    SBC: SOLARNO, INC            Topic: 08d

    The demands of the solar energy market require the development of advanced photovoltaic technologies. The DOE is seeking to develop organic PV technologies that are more efficient, long lasting and cost competitive to traditional ones. Organic PV (OPVs) have become well recognizedas an important candidate for future solar power products, although their efficiency is not exceeding 6-7%. The overal ...

    STTR Phase II 2010 Department of Energy
  3. Recovery Act- Parallel Tandem Organic Solar Cells with Carbon Nanotube Sheet Interlayers

    SBC: SOLARNO, INC            Topic: 08d

    This Small Business Technology Transfer Phase I project proposal focuses on attending to the need of photovoltaic power sources that can provide both high power and stability, be of low cost, low weight, flexible, and scalable to cover large areas. Organic photovoltaic (OPV) parallel tandem photovoltaic cells have a theoretical expected power conversion efficiency rivaling or even exceeding today

    STTR Phase I 2010 Department of Energy
  4. Mobile Ice Nucleus Counter

    SBC: Droplet Measurement Technologies, LLC            Topic: 32c

    Ice crystals can form spontaneously from the freezing of water droplets at temperatures colder than -38

    STTR Phase I 2010 Department of Energy
  5. Ultra Low-Power and Embeddable Blade-Condition Monitor

    SBC: Extreme Diagnostics, Inc.            Topic: 07c

    This SBIR/STTR project delivers an ultra-low power structural health monitoring (SHM) system that uses autonomous, wirelessly embedded sensors to monitor and assess structural integrity in wind turbine blades. EASE features impedance-based active SHM, which is highly sensitive to damage like cracks, delimitations, mass variations, fastener failures and stiffness changes. Blades are the only wind t ...

    STTR Phase I 2010 Department of Energy
  6. Recovery Act- Novel Method for Dewatering Using Lateral Displacement Array

    SBC: Phycal LLC            Topic: 10c

    The cost of dewatering particles is inversely proportional to particle size. Costs dramatically increase as particle size approaches 10

    STTR Phase I 2010 Department of Energy
  7. Recovery Act- Development of a Fiber Based Source of High Average Power Ultrafast Pulses at 2.0 Microns

    SBC: Kapteyn-Murnane Laboratories, Inc.            Topic: 04d

    Bright coherent light sources in the soft x-ray region of the spectrum are useful for a variety of applications of interest to DOE in the basic sciences, nanoscience and biology, and for technological applications. At Free-Electron Laser Facilities, peak power output of the x-ray pulses is enhanced by using a mid-infrared laser pulse instead of a near-infrared pulse. The current front end for mid- ...

    STTR Phase II 2010 Department of Energy
  8. Nickel-Based Amorphous Metal Membranes for Water Gas Shift Reactors

    SBC: MAINSTREAM ENGINEERING CORPORATION            Topic: 10c

    Hydrogen produced today from coal, natural gas, or biomass must be separated and purified outside the reactors using pressure swing absorption (PSA), a process that requires significant additional space and energy. Placing hydrogen-permeable membranes inside the reactors themselves would allow hydrogen to diffuse out, thereby reducing the cost of hydrogen production. In this Phase I effort, Mainst ...

    STTR Phase I 2010 Department of Energy
  9. Climate Control Technology for Fossil Energy

    SBC: Nanosonic Inc.            Topic: 24f

    Concern over CO2 emissions and global greenhouse effects has prompted new uses for reclaimed CO2 effluent from coal fired power plants. Similarly, volatile organic solvent emissions have prompted an initiative to identify cleaner solvents for high performance polymer processing, particularly when such processing requires large volumes of environmentally unfriendly, toxic organic solvents. Furthe ...

    STTR Phase I 2010 Department of Energy
  10. Bulk Thermoelectric Materials

    SBC: Nanosonic Inc.            Topic: 03b

    This DOE SBIR/STTR program will result in the commercialization of a low-cost anostructured composite thermoelectric device. Such devices represent the next generation solution for an increasingly strained energy market by converting existing waste heat into electrical power. More waste heat is generated by the combination of industry and automobiles than the total contribution of all renewable en ...

    STTR Phase I 2010 Department of Energy
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