US2007290393A1PendingUtilityA1

Rigid porous carbon structures, methods of making, methods of using and products containing same

Assignee: HYPERION CATALYSIS INTPriority: May 15, 1996Filed: Jul 22, 2005Published: Dec 20, 2007
Est. expiryMay 15, 2016(expired)· nominal 20-yr term from priority
C04B 35/63456Y10T428/2918C04B 2235/6021C04B 2235/524Y10T428/25Y10T442/63C04B 38/00B01J 20/205C04B 38/0051C04B 20/006C04B 2235/48Y10T442/624C04B 2235/5288B01J 23/44C04B 35/83Y10T428/30Y10T428/2938C04B 35/63432Y10S977/752B01J 20/28047C04B 2235/77Y10T428/249967B01J 20/28011C04B 2111/00129C04B 2235/386B01J 21/185C04B 14/386C01B 32/168Y10T442/614B82Y 40/00Y10S977/748D01F 11/14Y10S977/767C04B 35/63476Y10T428/249962B01J 20/28007B01J 21/18D04H 1/58Y10T442/699D01F 9/12B82Y 30/00B01J 20/20C04B 30/02Y10S977/753D04H 1/4242B01J 20/28014C01B 32/05B01J 20/28057B01J 23/28C04B 35/524C04B 35/583C04B 35/80D04H 1/43838C04B 2235/652C04B 35/6269B01J 35/58B01J 35/617B01J 35/638B01J 35/635
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Claims

Abstract

This invention relates to rigid porous carbon structures and to methods of making same. The rigid porous structures have a high surface area which are substantially free of micropores. Methods for improving the rigidity of the carbon structures include causing the nanofibers to form bonds or become glued with other nanofibers at the fiber intersections. The bonding can be induced by chemical modification of the surface of the nanofibers to promote bonding, by adding “gluing” agents and/or by pyrolyzing the nanofibers to cause fusion or bonding at the interconnect points.

Claims

exact text as granted — not AI-modified
1 - 37 . (canceled)  
     
     
         38 . A method for forming a pressed disk comprising: 
 functionalizing the surface of carbon fibrils by reaction with nitric acid;    drying said functionalized fibrils by vacuum filtration and vacuum oven;    grounding said functionalized fibrils;    pressing said ground fibrils into disks; and    calcining said disks at temperatures between 600 and 900° C.

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