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FBO DAILY - FEDBIZOPPS ISSUE OF SEPTEMBER 14, 2014 FBO #4677
SPECIAL NOTICE

99 -- TECHNOLOGY TRANSFER OPPORTUNITY DECORATED CARBON NANOTUBES FOR NOVELMATERIALS WITH TAILORABLE ELECTRICAL PROPERTIES. LAR-17267-1 17427-1 17638-1

Notice Date
9/12/2014
 
Notice Type
Special Notice
 
NAICS
927110 — Space Research and Technology
 
Contracting Office
NASA/Langley Research Center, Mail Stop 12, Industry Assistance Office, Hampton,VA 23681-0001
 
ZIP Code
23681-0001
 
Solicitation Number
TT01079
 
Archive Date
9/12/2015
 
Point of Contact
Jesse C Midgett, Program Specialist, Phone 757-864-3936, Fax 757-864-8314, Email j.midgett@nasa.gov
 
E-Mail Address
Jesse C Midgett
(j.midgett@nasa.gov)
 
Small Business Set-Aside
N/A
 
Description
NASA Langley Research Center in Hampton, VA solicits inquiries from companies interested in obtaining license rights to commercialize, manufacture and market the following technology. License rights may be issued on an exclusive or nonexclusive basis and may include specific fields of use. NASA provides no funding in conjunction with these potential licenses. THE TECHNOLOGY: Scientists at NASA Langley Research Center have developed a new class of materials based on depositing nanometer-sized metal particles onto carbon allotropes. The process is for depositing nanometer-sized metal particles onto a substrate in the absence of aqueous solvents, organic solvents, and reducing agents, and without any required pretreatment of the substrate. It involves first mixing carbon and an organometallic compound (silver, gold, platinum, palladium, cobalt, nickel) at specific concentrations followed by a thermal treatment. The resulting materials are novel structures that consist of the carbon allotrope with zero valence metallic particles distributed on the surface of the carbon allotrope. In the case of an antenna application, the conducting elements are placed directly into the substrate. The method is scalable and relatively simple, and allows for control over the size and distribution of the metal particles in the substrate, adjusting the surface area to optimize specific thermal or electrical properties of the material. One promising nanocomposite material created consists of multi-walled carbon nanotubes (MWCNTs) decorated with metal particles dispersed in a polymer matrix. Ribbons, tubes, and moldings of the nanocomposite were found to have novel intrinsic electrical characteristics that enable tunable dielectric constants with low loss factors. The decoupling and independent control of the two fundamental parameters offer a class of materials with the potential for finely tailored electronic properties. The novel methods enable materials that show promise for a variety of applications in electronics, communications, catalysis, and optics. Other applications such as catalysts for chemical reactions and polymerizations are possible. To express interest in this opportunity, please respond to LaRC-PatentLicensing@mail.nasa.gov with the title of this Technology Transfer Opportunity as listed in this FBO notice and your preferred contact information. Please also provide the nature of your interest in the technology along with a brief background of your company. For more information about licensing other NASA-developed technologies, please visit the NASA Technology Transfer Portal at http://technology.nasa.gov/. These responses are provided to members of NASA Langleys Office of Strategic Analysis and Business Development OSACB for the purpose of promoting public awareness of NASA-developed technology products, and conducting preliminary market research to determine public interest in and potential for future licensing opportunities. If direct licensing interest results from this posting, OSACB will follow the required formal licensing process of posting in the Federal Register. No follow-on procurement is expected to result from responses to this Notice.
 
Web Link
FBO.gov Permalink
(https://www.fbo.gov/spg/NASA/LaRC/OPDC20220/TT01079/listing.html)
 
Record
SN03509124-W 20140914/140912235824-300f18a4e3f39fd3ab51b7f46a02c169 (fbodaily.com)
 
Source
FedBizOpps Link to This Notice
(may not be valid after Archive Date)

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