Development Partners for Patterning Conductive Carbon Nanotube Films

RFP# 67665, "Development Partners for Patterning Conductive Carbon Nanotube Films."

NineSigma, representing a multi-billion dollar material manufacturer, seeks development partners for patterning, based on chemical-processings, Carbon Nanotube (CNT) films formed on Poly Ethylene Terephthalate (PET) substrates. NineSigma has identified you as a party with the potential to respond to this request, or as a contact who might know of someone with expertise in this area.

This invitation is not a complete description of the project. More information is available in the Request for Proposal (RFP) document online at http://www.ninesigma.com/viewrequest.aspx?request=67665&utm_sou... (or click here to go directly to the web page). The final submission date for Proposals is November 4, 2011.

If after reviewing the full RFP document you are interested in submitting a proposal or would like more information, please contact me by email and reference RFP# 67665 in the subject line. When you submit a proposal, please use the response template downloaded from the link below:
(https://www.myninesigma.com/sites/public/_layouts/ProposalTemplates...).

Sincerely,

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Tags: nanotube

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Welcome! Nanopaprika was cooked up by Hungarian chemistry PhD student in 2007. The main idea was to create something more personal than the other nano networks already on the Internet. Community is open to everyone from post-doctorial researchers and professors to students everywhere.

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Nanopaprika is always looking for new partners, if you have any idea, contact me at editor@nanopaprika.eu

Dr. András Paszternák, founder of Nanopaprika

Publications by A. Paszternák:

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Polymeric Honeycombs Decorated by Nickel Nanoparticles

Directed Deposition of Nickel Nanoparticles Using Self-Assembled Organic Template,

Organometallic deposition of ultrasmooth nanoscale Ni film,

Zigzag-shaped nickel nanowires via organometallic template-free route

Surface analytical characterization of passive iron surface modified by alkyl-phosphonic acid layers

Atomic Force Microscopy Studies of Alkyl-Phosphonate SAMs on Mica

Amorphous iron formation due to low energy heavy ion implantation in evaporated 57Fe thin films

Surface modification of passive iron by alkylphosphonic acid layers

Formation and structure of alkylphosphonic acid layers on passive iron

Structure of the nonionic surfactant triethoxy monooctylether C8E3 adsorbed at the free water surface, as seen from surface tension measurements and Monte Carlo simulations