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Title: Robust carbon monolith having hierarchical porosity

Patent ·
OSTI ID:1117700

A carbon monolith includes a robust carbon monolith characterized by a skeleton size of at least 100 nm, and a hierarchical pore structure having macropores and mesopores.

Research Organization:
Oak Ridge National Laboratory (ORNL), Oak Ridge, TN (United States)
Sponsoring Organization:
USDOE
DOE Contract Number:
AC05-00OR22725
Assignee:
UT-Battelle, LLC (Oak Ridge, TN); University of Tennessee Research Foundation (Knoxville, TN)
Patent Number(s):
8,628,705
Application Number:
13/741,745
OSTI ID:
1117700
Resource Relation:
Patent File Date: 2013 Jan 15
Country of Publication:
United States
Language:
English

References (24)

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Carbon molecular sieve material with structural regularity, method for preparing the same and use thereof patent July 2003
Carbon molecular sieve and method for manufacturing the same patent November 2004
Robust carbon monolith having hierarchical porosity patent November 2008
Robust carbon monolith having hierarchical porosity patent February 2011
Porous carbon electrode with conductive polymer coating patent April 2012
Imprinted mesoporous carbons and a method of manufacture thereof patent-application February 2003
Method for producing monolithic chromatography columns patent-application August 2003
Polyimide aerogels, carbon aerogels, and metal carbide aerogels and methods of making same patent-application July 2004
Robust carbon monolith having hierarchical porosity patent-application August 2005
Robust Carbon Monolith Having Hierarchical Porosity patent-application June 2011
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A Graphitized-Carbon Monolithic Column journal September 2003
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Octadecylsilylated Porous Silica Rods as Separation Media for Reversed-Phase Liquid Chromatography journal January 1996
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Separation of polar compounds using carbon columns journal March 2003
Carbon Monoliths Possessing a Hierarchical, Fully Interconnected Porosity journal July 2003
Hierachical Porous Carbon Structures from Cellulose Acetate Fibers journal July 2002
A computational study of the porosity effects in silica monolithic columns journal July 2004

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