General Nano LLC — Department of Defense STTR Phase II: General Nano's Phase II proposal is centered around low cost, high volume manufacturi

General Nano LLC — STTR Phase II award from Department of Defense.

Amount
$499,762
Agency
Department of Defense · Navy
Program / Phase
STTR · Phase II
Solicitation
2010.B
NAICS
Place of performance
OH
Period
2012-09-20

Description

General Nano's Phase II proposal is centered around low cost, high volume manufacturing of Carbon Nanotube (CNT) arrays on stainless steel sheets. The proposed technology is the basis for application development projects involving structural reinforced composites, conductive composites, EMI shielding, stray light absorption, thermal interface materials, batteries and super-capacitors. Four of the highest caliber defense contractors in the United States have provided Letters of Support to validate their interest in General Nano"s materials and to communicate their perspective on the importance of this program. The core deliverables of the project are centered on controllable process manufacturing. For example, controlling the catalyst particle sizes on large area sheets, controlling the number of CNT walls based on application requirements, and controlling CNT arrays densities and lengths over large areas involve nanomanufacturing and substrate engineering. Other objectives of this proposal include the conversion of long, aligned CNT arrays into free-standing sheets. CNT sheets with>1mm CNTs in an aligned arrangement has been demonstrated; this proposal will support the repeatable manufacturing of the proposed CNT sheet material. In summary, this proposal involves manufacturing CNT array materials using a large area stainless steel sheet process demonstrated in Phase I. This capability continues to attract the interest of the highest caliber defense contractors in the United States. Their interest involves integrating General Nano"s materials into applications that will enhance the electrical, thermal and/or mechanical performance of an application while reducing weight and extending the life of the application.