NASA SBIR 2019-I Solicitation

Proposal Summary


PROPOSAL NUMBER:
 19-1- Z1.04-2824
SUBTOPIC TITLE:
 Long Duration Lunar Energy Storage and Discharge
PROPOSAL TITLE:
 High Energy Density, Long Cycle Life Li-S Batteries for Space Applications
SMALL BUSINESS CONCERN (Firm Name, Mail Address, City/State/Zip, Phone)
ADA Technologies, Inc.
11149 Bradford Road
Littleton , CO 80127- 4200
(303) 792-5615

Principal Investigator (Name, E-mail, Mail Address, City/State/Zip, Phone)

Name:
Weibing Xing Ph.D.
E-mail:
weibingx@adatech.com
Address:
11149 Bradford Road Littleton, CO 80127 - 4200
Phone:
(303) 792-5615

Business Official (Name, E-mail, Mail Address, City/State/Zip, Phone)

Name:
James Budimlya
E-mail:
jim.budimlya@adatech.com
Address:
11149 Bradford Road Littleton, CO 80127 - 4200
Phone:
(303) 792-5615
Estimated Technology Readiness Level (TRL) :
Begin: 3
End: 4
Technical Abstract (Limit 2000 characters, approximately 200 words)

ADA Technologies, Inc. (ADA) proposes the development and subsequent manufacturing/commercialization of our high specific energy (>400 Wh/kg) nanoengineered lithium-sulfur (Li-S) battery technology to meet National Aeronautics and Space Administration (NASA) energy storage needs for lunar/space applications. Next generation lunar/space platforms will be equipped with significantly increased capabilities compared to today’s systems requiring a transcendent increase in battery specific energy (>400 Wh/kg) while maintaining a long operational life (thousands of cycles at various depth of discharge) and long shelf/service life (multiple years). The rechargeable Li-S battery is an attractive Next Generation, Beyond Li-Ion system that can satisfy the requisite specific energy demands. ADA’s solution addresses fundamental challenges associated with Li-S battery chemistries to provide performance and reliability/safety advantages, compared to state of the art (SOA). Promising results have been demonstrated in ADA preliminary studies, representing a great potential to meet NASA performance and safety goals.

Potential NASA Applications (Limit 1500 characters, approximately 150 words)

A successful technology development effort of ADA rechargeable Li-S battery technology will benefit current and emerging NASA next generation lunar/space applications including landers, habitats, science platforms, robotic and crewed rovers.  Our enabling Li-S battery technology can also ideally be applied to other NASA space programs such as the Moon to Mars Campaign. 

Potential Non-NASA Applications (Limit 1500 characters, approximately 150 words)

ADA next generation Li-S batteries are application agnostic and can be used in DoD next generation spacecraft (reconnaissance, navigation, communications satellites, unmanned aerial vehicles) and in commercial markets including electric drive vehicles that can benefit from ADA advanced Li-S batteries to significantly increase drive range with enhanced safety.

Duration: 6

Form Generated on 06/16/2019 23:18:43