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US Patent 7205069 Membrane comprising an array of single-wall carbon nanotubes

Patent 7205069 was granted and assigned to Rice University on April, 2007 by the United States Patent and Trademark Office.

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Current Assignee
Rice University
Rice University
Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
Patent Number
7205069
Date of Patent
April 17, 2007
Patent Application Number
10034745
Date Filed
December 28, 2001
Patent Citations Received
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US Patent 12005396 Advancements in osmotically driven membrane systems including multi-stage purification
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US Patent 11857894 Perforated layer coalescer
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US Patent 11911714 Perforated layer coalescer
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US Patent 11951428 Solid carbon products comprising compressed carbon nanotubes in a container and methods of forming same
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US Patent 11752459 Solid carbon products comprising compressed carbon nanotubes in a container and methods of forming same
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US Patent 11759751 Separation systems, elements, and methods for separation utilizing stacked membranes and spacers
Patent Primary Examiner
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John S. Maples
Patent abstract

This invention relates generally to membranes comprising an array of single-wall carbon nanotubes (SWNT) wherein the membrane is nanoporous. In one embodiment, the membrane comprises a substantially two-dimensional array of a homogeneous population of single-walled nanotubes aggregated in substantially parallel orientation to form a monolayer extending in directions substantially perpendicular to the orientation of the individual nanotubes. Using single-wall carbon nanotubes of the same type and structure provides a homogeneous array. By using different single-wall carbon nanotubes, either a random or ordered heterogeneous structure can be produced by employing successive reactions after removal of previously masked areas of a substrate. Other embodiments of the invention include batteries comprising a membrane comprising an array of single-wall carbon nanotubes or carbon fibers that are aggregates of single-wall carbon nanotubes, and wherein the plurality of single-wall carbon nanotubes are in a generally parallel orientation.

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