Growing community of inventors

Houston, TX, United States of America

Pavel Nikolaev

Average Co-Inventor Count = 8.57

ph-index = 32

The patent ph-index is calculated by counting the number of publications for which an author has been cited by other authors at least that same number of times.

Forward Citations = 2,931

Pavel NikolaevRichard E Smalley (37 patents)Pavel NikolaevDaniel T Colbert (37 patents)Pavel NikolaevAndrew Gabriel Rinzler (35 patents)Pavel NikolaevAndreas Thess (35 patents)Pavel NikolaevTing Guo (35 patents)Pavel NikolaevJason H Hafner (31 patents)Pavel NikolaevJie Liu (31 patents)Pavel NikolaevHongjie Dai (30 patents)Pavel NikolaevKenneth A Smith (19 patents)Pavel NikolaevKen A Smith (14 patents)Pavel NikolaevMark S F Clarke (2 patents)Pavel NikolaevDaniel L Feeback (2 patents)Pavel NikolaevRobert Kelley Bradley (2 patents)Pavel NikolaevSivaram Arepalli (2 patents)Pavel NikolaevMichael J Bronikowski (2 patents)Pavel NikolaevFrank Rohmund (2 patents)Pavel NikolaevHonglie Dai (1 patent)Pavel NikolaevJie Liu (1 patent)Pavel NikolaevPavel Nikolaev (39 patents)Richard E SmalleyRichard E Smalley (78 patents)Daniel T ColbertDaniel T Colbert (55 patents)Andrew Gabriel RinzlerAndrew Gabriel Rinzler (66 patents)Andreas ThessAndreas Thess (66 patents)Ting GuoTing Guo (47 patents)Jason H HafnerJason H Hafner (41 patents)Jie LiuJie Liu (40 patents)Hongjie DaiHongjie Dai (75 patents)Kenneth A SmithKenneth A Smith (31 patents)Ken A SmithKen A Smith (32 patents)Mark S F ClarkeMark S F Clarke (13 patents)Daniel L FeebackDaniel L Feeback (8 patents)Robert Kelley BradleyRobert Kelley Bradley (5 patents)Sivaram ArepalliSivaram Arepalli (2 patents)Michael J BronikowskiMichael J Bronikowski (2 patents)Frank RohmundFrank Rohmund (2 patents)Honglie DaiHonglie Dai (1 patent)Jie LiuJie Liu (14 patents)
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Inventor’s number of patents
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Strength of working relationships

Company Filing History:

1. William Marsh Rice University (37 from 634 patents)

2. Gb Tech, Inc. (2 from 4 patents)


39 patents:

1. 7959779 - Macroscopically manipulable nanoscale devices made from nanotube assemblies

2. 7939136 - Method for forming composites of sub-arrays of fullerene nanotubes

3. 7763229 - Isolation and purification of single walled carbon nanotube structures

4. 7655302 - Continuous fiber of fullerene nanotubes

5. 7632569 - Array of fullerene nanotubes

6. 7510695 - Method for forming a patterned array of fullerene nanotubes

7. 7481989 - Method for cutting fullerene nanotubes

8. 7419651 - Method for producing self-assembled objects comprising fullerene nanotubes and compositions thereof

9. 7419624 - Methods for producing composites of fullerene nanotubes and compositions thereof

10. 7390477 - Fullerene nanotube compositions

11. 7390767 - Method for producing a catalyst support and compositions thereof

12. 7357906 - Method for fractionating single-wall carbon nanotubes

13. 7354563 - Method for purification of as-produced fullerene nanotubes

14. 7338915 - Ropes of single-wall carbon nanotubes and compositions thereof

15. 7205069 - Membrane comprising an array of single-wall carbon nanotubes

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1/4/2026
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