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US Patent 10329391 Graphene-reinforced polymer matrix composites

Patent 10329391 was granted and assigned to Rutgers, the State University of New Jersey on June, 2019 by the United States Patent and Trademark Office.

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Contents

Is a
Patent
Patent

Patent attributes

Patent Applicant
Rutgers, the State University of New Jersey
Rutgers, the State University of New Jersey
Current Assignee
Rutgers, the State University of New Jersey
Rutgers, the State University of New Jersey
Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
Patent Number
10329391
Date of Patent
June 25, 2019
Patent Application Number
15500268
Date Filed
July 29, 2015
Patent Citations Received
‌
US Patent 12060473 Polymer/exfoliated nano-composite films with superior mechanical properties
0
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US Patent 11479652 Covalent conjugates of graphene nanoparticles and polymer chains and composite materials formed therefrom
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US Patent 11767430 Economical multi-scale reinforced composites
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US Patent 11878635 Graphene-based antiviral polymer
0
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US Patent 11479653 Use of graphene-polymer composites to improve barrier resistance of polymers to liquid and gas permeants
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US Patent 11577665 Urethane and graphene interior trim panel
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US Patent 11059945 In situ bonding of carbon fibers and nanotubes to polymer matrices
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US Patent 11702518 In situ bonding of carbon fibers and nanotubes to polymer matrices
0
...
Patent Primary Examiner
‌
Peter D. Mulcahy
Patent abstract

A graphene-reinforced polymer matrix composite comprising an essentially uniform distribution in a thermoplastic polymer of about 10% to about 50% of total composite weight of particles selected from graphite microp articles, single-layer graphene nanoparticles, multilayer graphene nanoparticles, and combinations thereof, where at least 50 wt % of the particles consist of single- and/or multi-layer graphene nanoparticles less than 50 nanometers thick along a c-axis direction. The graphene-reinforced polymer matrix is prepared by a method comprising (a) distributing graphite microparticles into a molten thermoplastic polymer phase comprising one or more matrix polymers; and (b) applying a succession of shear strain events to the molten polymer phase so that the matrix polymers exfoliate the graphite successively with each event until at least 50% of the graphite is exfoliated to form a distribution in the molten polymer phase of single- and multi-layer graphene nanoparticles less than 50 nanometers thick along a c-axis direction.

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