Nanostructured coating for a carrying base

Stock material or miscellaneous articles – Self-sustaining carbon mass or layer with impregnant or...

Reexamination Certificate

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C428S312200, C428S312800, C428S458000, C428S480000, C428S699000

Reexamination Certificate

active

07820292

ABSTRACT:
The invention pertains to high-molecular compound-based composite materials using carbon in nanostructured coatings including additional elements and bonds.Nanostructured coating of the carrying base comprises layers of amorphous carbon of sp-, sp2- and sp3-hybridized states of carbon atoms.New is that coating with a highly-developed surface of the polyester film base is directly bonded by the layer of sp3-hybridized state of carbon atoms and has on top an extra metal layer 25-250 nm thick; at the same time the film base surface has corrugations 10-30 nm deep and/or is furnished with pores 0.2-6 micron in size of a total volume of 10-60%, with ⅕-⅓ portion of pores made through.The proposed technical solution is a new film material with functional nanostructured coating intended to be used as an anode of the electrolytic capacitor due to an accumulated electric potential in current-carrying layers separated by the polyester base having a highly developed modified surface that provided their adhesion and improved the electrophysical characteristics of the material.

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patent: 6551653 (2003-04-01), Hatke et al.
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patent: 2217394 (2002-03-01), None
Kravets et al., Production of asymmetric track membranes by gas-discharge method, Surface and Coatings Technology, 2003, p. 821-825.
Translation of RU 2217394 to Baranov et al.
Shen et al., Amorphous carbon nitride thin films deposited by electrolysis of methanol and urea organic solutions, Journal of materials science letters, 18, N month 1999, pp. 317-319.

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