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INNOSENSE CORPORATION

Company Information
Address
2531 W 237TH ST STE 127
TORRANCE, CA 90505-5245
United States


https://www.innosensecorp.com

Information

UEI: Y45MWN6YRAB1

# of Employees: 23


Ownership Information

HUBZone Owned: No

Socially and Economically Disadvantaged: Yes

Woman Owned: Yes



Award Charts




Award Listing

  1. Manipulation of Enabling Microbial Systems for Improved Bioenergy Crops

    Amount: $1,649,964.00

    C53-30c-271154The Department of Energy is seeking the development of microbial amendments for crop production, specifically for sustainable bioenergy crops. Particularly desirable are plant growth pro ...

    SBIRPhase II2023Department of Energy
  2. Ion-Selective Membrane Derived from Ionic Block Copolymers with Controlled Nanostructure for Non-Aqueous Redox Flow Batteries

    Amount: $200,000.00

    The Department of Energy is seeking the development of innovative ion-selective membranes for advanced electrochemical energy storage systems. Non-aqueous redox flow batteries are of particular intere ...

    SBIRPhase I2022Department of Energy
  3. Manipulation of Enabling Microbial Systems for Improved Bioenergy Crops

    Amount: $256,500.00

    The Department of Energy is seeking the development of microbial amendments for crop production specifically for sustainable bioenergy crops. Of interest are plant growth promoting microbe systems tha ...

    SBIRPhase I2022Department of Energy
  4. Nanolayer-Coated Flame-Retardant Fabrics for Space Crew Clothing

    Amount: $799,998.00

    nbsp;NASA is seeking effective flame retardant (FR) treatment for next-to-the-skin crew clothing. This treatment must be compatible with fabrics relevant to the NASA space crew. The treated clothing m ...

    SBIRPhase II2022National Aeronautics and Space Administration
  5. Nanomaterials-enabled Electrodynamic Dust Shield

    Amount: $156,498.00

    NASA needs an advanced technology for dust mitigation relevant to its critical exploration missions. Electrostatic discharge (EDS) coatings will prevent build-up of charge and adhesion of dust on the ...

    SBIRPhase I2022National Aeronautics and Space Administration
  6. Nanomaterials Based in situ Hydrogen Sensor for Oxygen Process Streams

    Amount: $156,498.00

    NASA needs an advanced sensing technology for in-situ monitoring of hydrogen (H2) gas within high-pressure oxygen (O2) streams. It is a critical safety component for the successful operation of regene ...

    STTRPhase I2022National Aeronautics and Space Administration
  7. Nanomaterials Based In-Line Sensor for Ionic Silver in Spacecraft Potable Water Systems

    Amount: $759,999.00

    nbsp;The National Aeronautics and Space Administration (NASA) is seeking technologies for the in‚Äëline measurement of ionic silver (Ag+) in spacecraft potable water systems. Ionic silver is curre ...

    STTRPhase II2022National Aeronautics and Space Administration
  8. Efficient and Cost-Effective Enzymatic Conversion of Lignocellulose Feedstock to Useful Bioproducts

    Amount: $1,649,934.00

    The Department of Energy is seeking the development of novel, cost-effective and energy efficient enzymes for the deconstruction of lignocellulose. To support the bioeconomy as an alternative source o ...

    STTRPhase II2022Department of Energy
  9. Wrap-able, Radiation-Resistant Electrical Insulators for Superconducting Magnet Applications

    Amount: $1,149,932.00

    Statement of the problem or situation that is being addressed: The Department of Energy, Office of Fusion Energy Sciences is seeking the development of wrap-able radiation-resistant electrical insulat ...

    STTRPhase II2022Department of Energy
  10. Lithium Oxyhalide Battery Separator Material

    Amount: $1,727,514.00

    InnoSense LLC (ISL) is further-engineering an all-ceramic, rollable separator (CeRollS™) component for use in lithium oxyhalide batteries (LOHBs). Our goal is to render this flexible ceramic separat ...

    SBIRPhase II2022Department of Defense Missile Defense Agency
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