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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. Freeze Casting of Tubular Sulfer Tolerant Materials for Solid Oxide Fuel Cells

    SBC: Millennitek, LLC            Topic: A14AT011

    Solid oxide fuel cells have long suffered from degradation due to impurities in the fuel and complexities associated with dissimilar materials and high operating temperatures. This degradation lowers the usable cell power output and requires ancillary equipment for fuel sulfur removal and reformation. A unique microstructure for a tubular anode-supported SOFC is being developed using a novel freez ...

    STTR Phase II 2020 Department of DefenseArmy
  2. In Theater Additive Manufacturing of Ceramic Armor for Dismounted Soldiers and Structures

    SBC: Goodman Technologies LLC            Topic: A17AT012

    October 4, 2019 the Secretary of the Army Ryan D. McCarthy has approved a new policy on advanced manufacturing that will help the Army secure a competitive edge against near-peer adversaries.  It is  Army Directive 2019-29 “Enabling Readiness and Modernization Through Advanced Manufacturing, also called the Army Advanced Manufacturing Initiative (AAMI). The AAMI is in accordance with the Pres ...

    STTR Phase II 2020 Department of DefenseArmy
  3. Urbanscape: Single Shot Multi-Task 3D Reconstruction

    SBC: DZYNE Technologies Incorporated            Topic: DTRA18B001

    Hazard assessment tools that model the transport and dispersion of Chemical, Biological, Radiological, Nuclear and Explosive (CBRNE) materials through urban areas are only as good as the 3D models that inform the physics model. Maintaining accurate, up-to-date 3D models of urban areas is challenging. Even in the commercial world, urban construction and demolition may result in the models created a ...

    STTR Phase II 2020 Department of DefenseDefense Threat Reduction Agency
  4. Novel Circulating RNA-based Markers as Diagnostic Biomarkers of Infectious Diseases

    SBC: CFD Research Corporation            Topic: CBD18A001

    In resource limited settings, rapid and accurate diagnosis of infections is critical for managing potential exposures to highly virulent pathogens, whether occurring from an act of bioterrorism or a natural event. This is especially important for hard to detect intracellular bacterial and alphavirus infections, that overlap symptomatically and often treated empirically due to a lack of reliable an ...

    STTR Phase II 2020 Department of DefenseOffice for Chemical and Biological Defense
  5. Marburg Virus Prophylactic Medical Countermeasure

    SBC: MAPP BIOPHARMACEUTICAL, INC.            Topic: CBD18A002

    There are currently no vaccines or therapeutics available for Marburg Virus Disease (MVD). Given the specter of weaponization and the terrible morbidity and high mortality rate of MVD, this represents a critical threat to the operational readiness of the Warfighter. While traditional vaccines have contributed greatly to public health, they have some limitations especially in the context of operati ...

    STTR Phase II 2020 Department of DefenseOffice for Chemical and Biological Defense
  6. Scaled Melanin Production to Enable Advanced Materials

    SBC: Luna Innovations Incorporated            Topic: A19BT010

    Melanin is a largely unexplored biomolecule with a large diversity of molecular composition. It has broad electromagnetic absorbance, is capable of absorbing gamma radiation, is a strong antioxidant, and is resistant to environmental degradation. Despite many intriguing qualities, it has never been produced at industrial scales to enable innovations in materials and coatings. In response to the de ...

    STTR Phase I 2020 Department of DefenseArmy
  7. Marburg Virus Prophylactic Medical Countermeasure

    SBC: Flow Pharma, Inc.            Topic: CBD18A002

    Through this STTR contract, we propose to evaluate the efficacy of our vaccine, FlowVax Marburg, in nonhuman primates (NHPs). This will be achieved through four Tasks. In Task 1, we will manufacture the vaccine in a quantity sufficient for the animal studies. In Task 2, we will perform MHC genotyping on a representative population of NHPs and, based on results, select a set of MHC-matched NHPs for ...

    STTR Phase II 2020 Department of DefenseOffice for Chemical and Biological Defense
  8. Physical Vapor Deposition (PVD) as a Method to produce High Aspect Ratio Conductive Flakes for Advanced Bispectral or Infrared (IR) Obscuration

    SBC: Luna Innovations Incorporated            Topic: A19BT011

    There is a significant need to improve the IR attenuation performance of military obscurants and advanced nanostructures could fulfill this demand. Metal flakes Physical vapor deposition (PVD) affirm that more than order of magnitude increases over current performance levels are possible if high aspect-ratio conductive flakes/discs can be effectively disseminated as an un-agglomerated aerosol clou ...

    STTR Phase I 2020 Department of DefenseArmy
  9. Microfluidic Platform for Detection and Quantification of DNA Methylation

    SBC: CFD Research Corporation            Topic: A19BT013

    Epigenetic changes in DNA methylation pattern can result due to aging, diseases, or environmental changes and have been identified as biomarkers for several neuropsychiatric and neurodegenerative disorders, cancer, traumatic brain injury (TBI) and post-traumatic stress disorder (PTSD). As a result, DNA methylation signatures are being explored to assist with disease diagnosis, monitoring disease p ...

    STTR Phase I 2020 Department of DefenseArmy
  10. Mm-Wave Phased-Array Antennas with Ultra-Low-Latency Beam-Forming and Spatial-Filtering for Highly Dynamic and Mobile Satellite Communications

    SBC: Alcatera Inc.            Topic: A19CT006

    This project aims to reduce the size and cost of current AEHF front-end by the integration of a compact beam-steering antenna array. The integration consists of novel antenna design, novel steering technique, and a scalable capable architecture.

    STTR Phase I 2020 Department of DefenseArmy
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