SBIR-STTR Award

Recovery Act - Scale-up of the Nanomanufacturing of Coated Powders for Superior Battery Electrode Materials
Award last edited on: 10/29/2024

Sponsored Program
STTR
Awarding Agency
DOE
Total Award Amount
$150,000
Award Phase
1
Solicitation Topic Code
09 b
Principal Investigator
David M King

Company Information

ALD NanoSolutions Inc (AKA: ALDN)

580 Burbank Street Unit 100
Broomfield, CO 80020
   (303) 318-4145
   reactors@aldnanosolutions.com
   www.aldnanosolutions.com

Research Institution

University of Colorado - Boulder

Phase I

Contract Number: N/A
Start Date: 00/00/00    Completed: 3/18/2011
Phase I year
2010
Phase I Amount
$150,000
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 power batteries for small personal devices. In order to insure that the U.S. remains the leader in the global manufacturing sector, it is imperative that known nanotechnology-enabled solutions be scaled-up such that the generational gains that will be made by first-to-market products, are made by U.S. companies and use flexible, responsible, lean manufacturing techniques. A nanotechnology-enabled route to produce superior battery electrode materials with enhanced dispersability and improved corrosion resistance has been developed, and can be applied to many types of batteries. Commercial Applications and Other

Benefits:
This Phase I proposal includes the two-pronged approach of the validation of a novel nanomanufacturing process, and the simultaneous provision of nano-encapsulated particles with enhanced dispersability and corrosion resistance to the market leader in the alkaline battery market. The follow-on Phase II work will involve the construction of a series of inexpensive, modular, high-throughput reactors to achieve production levels of tons per year. This technique can not only revolutionize the battery industry, but can also supplant many existing particle coating processes that are energy intensive and waste significant amounts of raw materials due to the `overbuilding

Phase II

Contract Number: ----------
Start Date: 00/00/00    Completed: 00/00/00
Phase II year
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Phase II Amount
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