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US20170291818A1 - Discrete carbon nanotubes with targeted oxidation levels and formulations thereof - Google Patents

Discrete carbon nanotubes with targeted oxidation levels and formulations thereof
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Publication number
US20170291818A1
US20170291818A1US15/482,304US201715482304AUS2017291818A1US 20170291818 A1US20170291818 A1US 20170291818A1US 201715482304 AUS201715482304 AUS 201715482304AUS 2017291818 A1US2017291818 A1US 2017291818A1
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US
United States
Prior art keywords
carbon nanotubes
composition
discrete
exterior surface
species content
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Abandoned
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US15/482,304
Inventor
Kurt W. Swogger
Clive P. Bosnyak
Nancy Henderson
Malcolm Finlayson
Bryce D. Sturtevant
Steve Hoenig
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Molecular Rebar Design LLC
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Molecular Rebar Design LLC
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
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Publication date
Application filed by Molecular Rebar Design LLCfiledCriticalMolecular Rebar Design LLC
Priority to US15/482,304priorityCriticalpatent/US20170291818A1/en
Assigned to MOLECULAR REBAR DESIGN, LLCreassignmentMOLECULAR REBAR DESIGN, LLCASSIGNMENT OF ASSIGNORS INTEREST (SEE DOCUMENT FOR DETAILS).Assignors: SWOGGER, KURT W., BOSNYAK, CLIVE P., FINLAYSON, MALCOLM, HENDERSON, NANCY, HOENIG, STEVE, STURTEVANT, BRYCE
Priority to US15/730,284prioritypatent/US10589997B2/en
Publication of US20170291818A1publicationCriticalpatent/US20170291818A1/en
Priority to US16/808,843prioritypatent/US20200198973A1/en
Abandonedlegal-statusCriticalCurrent

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Abstract

Discrete, individualized carbon nanotubes having targeted, or selective, oxidation levels and/or content on the interior and exterior of the tube walls are claimed. Such carbon nanotubes can have little to no inner tube surface oxidation, or differing amounts and/or types of oxidation between the tubes' inner and outer surfaces. These new discrete carbon nanotubes are useful in plasticizers, which can then be used as an additive in compounding and formulation of elastomeric, thermoplastic and thermoset composite for improvement of mechanical, electrical and thermal properties.

Description

Claims (17)

We claim:
1. A composition comprising a plurality of discrete carbon nanotubes, wherein the discrete carbon nanotubes comprise an interior and exterior surface, the interior surface comprising an interior surface oxidized species content and the exterior surface comprising an exterior surface oxidized species content, wherein the interior surface oxidized species content comprises from about 0.01 to less than about 1 percent relative to carbon nanotube weight and the exterior surface oxidized species content comprises more than about 1 to about 3 percent relative to carbon nanotube weight.
2. The composition ofclaim 1 wherein the discrete carbon nanotubes comprises a plurality of open ended tubes.
3. A composition comprising a plurality of discrete carbon nanotubes, wherein the discrete carbon nanotubes comprise an interior and exterior surface, the interior surface comprising an interior surface oxidized species content and the exterior surface comprising an exterior surface oxidized species content, wherein the interior surface oxidized species content differs from the exterior surface oxidized species content by at least 20%, and as high as 100%.
4. The composition ofclaim 3 wherein the plurality of discrete carbon nanotubes comprises a plurality of open ended tubes.
5. The composition ofclaim 3 wherein the interior surface oxidized species content is less than the exterior surface oxidized species content.
6. The composition ofclaim 3 wherein the interior surface oxidized species content is up to 3 weight percent relative to carbon nanotube weight.
7. The composition ofclaim 3 wherein the exterior surface oxidized species content is from about 1 to about 6 weight percent relative to carbon nanotube weight.
8. The composition ofclaim 3 wherein the interior and exterior surface oxidized species content totals from about 1 to about 9 weight percent relative to carbon nanotube weight.
9. The composition ofclaim 1 wherein the inner and outer surface oxidation difference is at least about 0.2 weight percent.
10. The composition ofclaim 3 wherein the oxygenated species is selected from the group consisting of carboxylic acids, phenols, aldehydes, ketones, ether linkages, and combinations thereof.
11. The composition ofclaim 3 wherein the total oxygenated species content of the interior surface and exterior surface comprises from about 1% to 15% by weight of the carbon nanotubes.
12. The composition ofclaim 3 in the form of free flowing particles.
13. The composition ofclaim 3, wherein the composition is further mixed with at least one rubber.
14. The composition ofclaim 3, wherein the composition further comprises at least one thermoplastic polymer, at least one thermoplastic elastomer, or combinations thereof.
15. The composition ofclaim 3, wherein the composition further comprises at least one thermoset polymer selected from the group consisting of an epoxy, a polyurethane, and combinations thereof.
16. A composition useful for treating contaminated groundwater comprising a plurality of discrete carbon nanotubes, wherein the discrete carbon nanotubes comprise an interior and exterior surface, the interior surface comprising an interior surface oxidized species content and the exterior surface comprising an exterior surface oxidized species content, and at least one degradative molecule that is attached on the interior or exterior surface of at least a portion of the plurality of discrete carbon nanotubes.
17. A process to make the composition ofclaim 3, comprising the steps of: a) selecting a plurality of discrete carbon nanotubes having an average aspect ratio of from about 10 to about 500, and an oxidative species content total level from about 1 to about 15% by weight, b) suspending the discrete carbon nanotubes in an aqueous medium at a nanotube concentration from about 1% to about 10% by weight to form an aqueous medium/nanotube slurry, c) mixing the carbon nanotube/aqueous medium slurry with at least one plasticizer at a temperature from about 30° C. to about 100° C. for sufficient time that the carbon nanotubes migrate from the aqueous medium to the plasticizer to form a wet nanotube/plasticizer mixture, e) separating the aqueous medium from the wet carbon nanotube/plasticizer mixture to form a dry nanotube/plasticizer mixture, and f) removing residual aqueous medium from the dry nanotube/plasticizer mixture by drying from about 40° C. to about 120° C. to form an anhydrous nanotube/plasticizer mixture.
US15/482,3042016-04-072017-04-07Discrete carbon nanotubes with targeted oxidation levels and formulations thereofAbandonedUS20170291818A1 (en)

Priority Applications (3)

Application NumberPriority DateFiling DateTitle
US15/482,304US20170291818A1 (en)2016-04-072017-04-07Discrete carbon nanotubes with targeted oxidation levels and formulations thereof
US15/730,284US10589997B2 (en)2016-04-072017-10-11Discrete carbon nanotubes with targeted oxidation levels and stable gel formulations thereof
US16/808,843US20200198973A1 (en)2016-04-072020-03-04Discrete carbon nanotubes with targeted oxidation levels and stable gel formulations thereof

Applications Claiming Priority (2)

Application NumberPriority DateFiling DateTitle
US201662319599P2016-04-072016-04-07
US15/482,304US20170291818A1 (en)2016-04-072017-04-07Discrete carbon nanotubes with targeted oxidation levels and formulations thereof

Related Child Applications (1)

Application NumberTitlePriority DateFiling Date
US15/730,284Continuation-In-PartUS10589997B2 (en)2016-04-072017-10-11Discrete carbon nanotubes with targeted oxidation levels and stable gel formulations thereof

Publications (1)

Publication NumberPublication Date
US20170291818A1true US20170291818A1 (en)2017-10-12

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US15/482,304AbandonedUS20170291818A1 (en)2016-04-072017-04-07Discrete carbon nanotubes with targeted oxidation levels and formulations thereof
US16/092,130ActiveUS10414656B2 (en)2016-04-072017-04-07Discrete carbon nanotubes with targeted oxidation levels and formulations thereof
US15/778,444ActiveUS10414655B2 (en)2016-04-072017-04-07Stem cell, bone, tissue and nerve scaffolding from discrete carbon nanotubes
US16/092,123PendingUS20190151240A1 (en)2016-04-072017-04-07Stem Cell, Bone, Tissue and Nerve Scaffolding from Discrete Carbon Nanotubes

Family Applications After (3)

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US16/092,130ActiveUS10414656B2 (en)2016-04-072017-04-07Discrete carbon nanotubes with targeted oxidation levels and formulations thereof
US15/778,444ActiveUS10414655B2 (en)2016-04-072017-04-07Stem cell, bone, tissue and nerve scaffolding from discrete carbon nanotubes
US16/092,123PendingUS20190151240A1 (en)2016-04-072017-04-07Stem Cell, Bone, Tissue and Nerve Scaffolding from Discrete Carbon Nanotubes

Country Status (9)

CountryLink
US (4)US20170291818A1 (en)
EP (3)EP4234023A3 (en)
JP (2)JP6804553B2 (en)
KR (2)KR102158421B1 (en)
CN (3)CN109563302A (en)
BR (1)BR112018070583A2 (en)
CA (1)CA3020462C (en)
ES (1)ES2958592T3 (en)
WO (2)WO2017177166A1 (en)

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US10757988B1 (en)*2020-04-072020-09-01Molecular Rebar Design, LlcPersonal protective equipment with functionalized nanotube compositions to control pathogens such as SARS CoV-2 (coronavirus)
CN113651313A (en)*2021-09-282021-11-16绍兴道普新材料科技有限公司Hollow submicron nitrogen-doped carbon tube and preparation method thereof

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US20240417680A1 (en)*2023-06-162024-12-19Molecular Rebar Design, LlcNanotube compositions and methods for faciliating stem cell growth

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WO2019222475A1 (en)*2018-05-162019-11-21Molecular Rebar Design, LlcDose response, surface modified nanotubes
US10757988B1 (en)*2020-04-072020-09-01Molecular Rebar Design, LlcPersonal protective equipment with functionalized nanotube compositions to control pathogens such as SARS CoV-2 (coronavirus)
CN113651313A (en)*2021-09-282021-11-16绍兴道普新材料科技有限公司Hollow submicron nitrogen-doped carbon tube and preparation method thereof

Also Published As

Publication numberPublication date
US10414656B2 (en)2019-09-17
CN109563302A (en)2019-04-02
EP3439673A4 (en)2020-03-04
JP6804553B2 (en)2020-12-23
CA3020462C (en)2023-01-17
KR20180133881A (en)2018-12-17
EP3440129B1 (en)2023-07-19
US20190161350A1 (en)2019-05-30
CA3020462A1 (en)2017-10-12
KR102158421B1 (en)2020-09-23
WO2017177193A1 (en)2017-10-12
US20190151240A1 (en)2019-05-23
KR20180132802A (en)2018-12-12
ES2958592T3 (en)2024-02-12
EP3440129A1 (en)2019-02-13
BR112018070583A2 (en)2019-02-05
CN120118387A (en)2025-06-10
EP3440129A4 (en)2020-04-01
EP4234023A2 (en)2023-08-30
EP4234023A3 (en)2023-11-08
JP2019513678A (en)2019-05-30
EP3439673A1 (en)2019-02-13
JP2019510586A (en)2019-04-18
WO2017177166A1 (en)2017-10-12
US10414655B2 (en)2019-09-17
CN109689070A (en)2019-04-26
US20180339904A1 (en)2018-11-29

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ASAssignment

Owner name:MOLECULAR REBAR DESIGN, LLC, TEXAS

Free format text:ASSIGNMENT OF ASSIGNORS INTEREST;ASSIGNORS:SWOGGER, KURT W.;BOSNYAK, CLIVE P.;HENDERSON, NANCY;AND OTHERS;SIGNING DATES FROM 20170411 TO 20170412;REEL/FRAME:042160/0028

STCVInformation on status: appeal procedure

Free format text:ON APPEAL -- AWAITING DECISION BY THE BOARD OF APPEALS

STCVInformation on status: appeal procedure

Free format text:BOARD OF APPEALS DECISION RENDERED

STCBInformation on status: application discontinuation

Free format text:ABANDONED -- AFTER EXAMINER'S ANSWER OR BOARD OF APPEALS DECISION


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