Conductive substance-adsorbing resin film, method for...

Catalyst – solid sorbent – or support therefor: product or process – Solid sorbent – Organic

Reexamination Certificate

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C502S400000, C502S401000

Reexamination Certificate

active

08076264

ABSTRACT:
The invention provides a conductive substance-adsorbing resin film on which a conductive layer being excellent in adhesion to the resin film and having less unevenness at the interface with the resin film can easily be formed, a method for producing the same, a metal layer-coated resin film on which a high definition wiring excellent in adhesion to the insulating resin film can easily be formed, which is obtained by using the conductive substance-adsorbing resin film of the invention, and a method for producing a metal layer-coated resin film that is a material capable of easily producing a printed-wiring board having a high definition wiring. The invention also provides a conductive substance-adsorbing resin film including at least two resin layers, wherein at least one of the resin layers is an adsorbing resin layer having a property of adsorbing a conductive substance or a metal. This conductive substance-adsorbing resin film is allowed to adsorb a metal and subjected to plating, whereby a metal layer-coated resin film can be obtained.

REFERENCES:
patent: 2003/0068581 (2003-04-01), Kawamura et al.
patent: 2008/0029294 (2008-02-01), Kawamura et al.
patent: 2009/0022885 (2009-01-01), Matsumoto et al.
patent: 58-196238 (1983-11-01), None
patent: 2004-56106 (2004-02-01), None
patent: 2006-228951 (2008-08-01), None
patent: 2005/120142 (2005-12-01), None
Esp@cenet patent family list for JP2006-228951. Viewed Mar. 1, 2011.
Luis M. Liz-Marzan et al, “Stable Hydrosols of Metallic and Bimetallic Nanoparticles Immobilized on Imogolite Fibers”, J. Phys. Chem. 1995, vol. 99, pp. 15120-15128.
M. A. Carignano et al, “Adsorption of model charged proteins on charged surfaces wih grafted polymers”, Molecular Phys., 2002, vol. 100, No. 18. pp. 2993-3003.

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