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Thermal management system containing a graphene oxide-coated graphitic foil laminate for electronic device application

  • US 10,229,862 B2
  • Filed: 11/02/2012
  • Issued: 03/12/2019
  • Est. Priority Date: 11/02/2012
  • Status: Active Grant
First Claim
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1. A heat dissipation system, comprising:

  • (a) an electronic device comprising a heat source, wherein the heat source transmits heat to a second component or an external surface of the electronic device;

    (b) a heat-conducting layer comprising two major surfaces, wherein one of said major surfaces is in operative contact with the heat source such that the heat-conducting layer is interposed between the heat source and the second component or the external surface of the electronic device;

    wherein the heat-conducting layer comprises at least one graphene oxide-coated graphitic foil laminate, and wherein the laminate is composed of a graphitic substrate or core layer having two opposed primary surfaces and at least a graphene oxide coating layer deposited directly on at least one of said two primary surfaces, wherein said graphitic substrate or core layer has a thickness greater than 1 nm, and said graphene oxide coating layer has a thickness greater than 1 nm and an oxygen content of 0.01%-40% by weight based on the total graphene oxide coating weight, wherein said graphitic substrate or core layer is selected from the group consisting of flexible graphite foil, graphite particle paper, carbon-carbon composite film, carbon nanofiber paper, carbon nanotube paper, graphene fluoride paper, hydrogenated graphene paper, doped graphene paper, and functionalized graphene paper, wherein said graphene oxide coating layer comprises a unitary graphene layer or a single crystal of graphene planes that are parallel to a graphene oxide coating layer surface, and wherein each unitary graphene layer is a large-scale entity, no less than 10 μ

    m in length or width, and having an integrated layer of highly ordered structure of carbon atoms wherein said graphene oxide-coated graphitic foil laminate exhibits an in-plane thermal conductivity greater than 1,000 W/mK and an in-plane electric conductivity greater than 1,500 S/cm and a thickness-direction thermal conductivity lower than 10 W/mK.

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