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    • 6. 发明授权
    • Graphite composites and methods of making such composites
    • 石墨复合材料和制备这种复合材料的方法
    • US06927250B2
    • 2005-08-09
    • US10219558
    • 2002-08-15
    • David M. KaschakRobert A. Reynolds, IIIDaniel W. Krassowski
    • David M. KaschakRobert A. Reynolds, IIIDaniel W. Krassowski
    • C08K3/04
    • C08K3/04Y02P20/544
    • The invention may be practiced to make graphite composites. Preferred composites which may be made in accordance with the invention include conductive polymeric composites (thermally or electrically), paint composites, battery composites, capacitor composites, and pollution abatement catalyst support composites. One method of making the graphite aforementioned composites includes introducing an intercalant into at least one interstice of at least one flake of natural graphite. The method also includes introducing a fluid into the at least one interstices of the flake. Preferably, the fluid comprises at least one of a sub-critical fluid, near critical point fluid, or a supercritical fluid. Furthermore the method includes blending the flake with a polymer, thereby forming a graphite-polymeric composite.
    • 可以实施本发明以制备石墨复合材料。 可以根据本发明制备的优选的复合材料包括导电聚合复合材料(热或电),涂料复合材料,电池复合材料,电容器复合材料和减少污染的催化剂载体复合材料。 制备石墨上述复合材料的一种方法包括将插入剂引入至少一片天然石墨的至少一个空隙中。 该方法还包括将流体引入片的至少一个间隙中。 优选地,流体包括亚临界流体,临界点流体或超临界流体中的至少一种。 此外,该方法包括将片状物与聚合物混合,从而形成石墨 - 聚合物复合材料。
    • 8. 发明授权
    • Graphite intercalation and exfoliation process
    • 石墨插层和剥离过程
    • US07105108B2
    • 2006-09-12
    • US10219176
    • 2002-08-15
    • David M. KaschakRobert A. Reynolds, IIIDaniel W. KrassowskiBrian M. Ford
    • David M. KaschakRobert A. Reynolds, IIIDaniel W. KrassowskiBrian M. Ford
    • C01B31/04
    • B82Y30/00B82Y40/00C01B32/19C01B32/22C01B32/225C01B2204/04Y02P20/544
    • The invention relates to expanded graphite and methods of making the graphite and products that can be made from the graphite made from the inventive process. The invention includes the step of introducing a fluid into at least one of a plurality of interstices of graphite flake, wherein the fluid comprises at least one of a sub-critical point fluid, a near critical point fluid, or a supercritical fluid. The graphite flake is also intercalated with an intercalant and optionally an oxidizing agent. The invention may further include novel techniques of exfoliating the graphite. The invention may be practiced to make nano-sized graphite particles and also graphite composites. Preferred composites which may be made in accordance with the invention include conductive polymeric composites (thermally or electrically), paint composites, battery composites, capacitor composites, and pollution abatement catalyst support composites.
    • 本发明涉及膨胀石墨和制造石墨的方法以及可由本发明方法制成的石墨制成的产品。 本发明包括将流体引入到多个石墨片间隙中的至少一个中的步骤,其中流体包括亚临界点流体,临界点流体或超临界流体中的至少一个。 石墨片也插入插层剂和任选的氧化剂。 本发明还可以包括剥离石墨的新技术。 可以实施本发明以制备纳米尺寸的石墨颗粒和石墨复合材料。 可以根据本发明制备的优选的复合材料包括导电聚合复合材料(热或电),涂料复合材料,电池复合材料,电容器复合材料和减少污染的催化剂载体复合材料。