IP Library Granted Patent US 9,944,529
Granted Patent B2
US 9,944,529 · App. 15/204,737 · Granted Apr 17, 2018

Fabrication and application of nanofiber ribbons and sheets and twisted and non-twisted nanofiber yarns

Inventors: Mei Zhang (Plano, TX); Shaoli Fang (Richardson, TX); Ray H. Baughman (Dallas, TX); Anvar A. Zakhidov (McKinney, TX); Kenneth Ross Atkinson (Victoria, AU); Ali E. Aliev (Dallas, TX); Sergey Li (Dallas, TX); Chris Williams (Dallas, TX)
Assignee: Board of Regents, The University of Texas System
C01B31/024B01L3/502707B32B37/12B82Y10/00C01B31/0226C01B31/0253C01B31/0293C04B35/62231C04B35/62272C04B35/62281C04B35/62855C04B35/62892C04B35/62897C04B35/80C23C16/44C23C16/50D01F9/08D01F9/1273D01F9/1275D02G3/16D04H3/002D06B15/00D06M15/256D06M15/333G01L1/2287G02F1/133308H01B1/24H01B5/08H01G11/36H01L51/0048H01L51/444H01L51/5206H01M4/926H01M10/0565H05K9/0081B32B2307/202B82Y30/00B82Y40/00C01B2202/06C01B2202/08C04B2235/422C04B2235/526C04B2235/5248C04B2235/5264C04B2235/616D10B2101/122G02F2001/133334G02F2001/1515H01L51/5234H01L51/5296H01M4/8605Y02E10/549Y02E60/13Y02P70/521Y10S977/742Y10S977/745Y10S977/746Y10S977/752Y10S977/843Y10S977/844Y10S977/847Y10S977/848Y10S977/932Y10S977/948Y10S977/961Y10T428/30
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Quick Facts
Patent No.
US 9,944,529
App. No.
15/204,737
Granted
Apr 17, 2018
Kind
B2
Abstract

A process of producing a yarn, ribbon or sheet that includes nanofibers in which the process includes forming a yarn, ribbon or sheet comprising nanofibers, and applying an enhancing agent comprising a polymer to the yarn, ribbon or sheet.

Claims (26)

1. A process of producing a composite yarn, ribbon or sheet comprising nanofibers, the process comprising the steps of:

(a) forming a yarn, ribbon or sheet comprising nanofibers by drawing the yarn, ribbon or sheet from a nanofiber forest; and

(b) applying an enhancing agent to the yarn, ribbon or sheet to form a composite yarn, ribbon or sheet, the enhancing agent is selected from a group consisting of friction aids, electrolytes, binding agents, species that enhance thermal conductivity of the yarn, ribbon or sheet, species that enhance electrical conductivity of the yarn, ribbon or sheet, and combinations thereof.

2. The process of claim 1 , wherein the enhancing agent is applied to the yarn, ribbon or sheet from a gas state, from a liquid state, by gas plasma, electrochemically from a solution, by particle infiltration, by fiber infiltration or combinations thereof.

3. The process of claim 1 , wherein the enhancing agent comprises a polymer selected from a group consisting of a polyvinyl alcohol, a polyvinyl alcohol copolymer or combinations thereof.

4. The process of claim 1 , wherein the enhancing agent comprises a polymer that comprises a fluorocarbon.

5. A process of producing a composite nanofiber yarn, ribbon or sheet comprising nanofibers, the process comprising the steps of:

(a) forming a yarn, ribbon or sheet comprising nanofibers by drawing the yarn, ribbon or sheet from a nanofiber forest; and

(b) applying an electrically conducting material to (i) the nanofiber forest or (ii) the yarn, ribbon or sheet drawn from the nanofiber forest to form a composite yarn, ribbon or sheet, wherein the electrically conducting material is selected from the group consisting of conducting polymers, metals, metal alloys and combinations thereof.

6. The process of claim 5 , wherein said electrically conducting material comprises a dopable organic polymer that is electrochemically polymerized.

7. The process of claim 5 , wherein the nanofiber yarn, ribbon or sheet comprises carbon nanotubes.

8. The process of claim 5 , wherein the composite nanofiber yarn, ribbon or sheet comprises an additive selected from the group consisting of a binding agent, a species that enhances electrical conductivity, and combinations thereof.

9. A process of producing a nanofiber yarn, the process comprising the steps of:

(a) providing a pre-primary assembly, wherein the pre-primary assembly comprises a substantially parallel array of nanofibers;

(b) drawing from the pre-primary assembly to provide a primary assembly of the nanofibers having an alignment axis about which twisting can occur, wherein the primary assembly is selected from the group consisting of (i) an aligned array and (ii) an array that is converging toward alignment about the alignment axis;

(c) twisting about the alignment axis of said primary assembly to produce a twisted yarn; and

(d) applying an additive, wherein the additive is selected from the group consisting of a friction aid, electrolyte, binding agent, a species that enhances yarn thermal conductivity, a species that enhances yarn electrical conductivity, or combinations thereof and the additive is applied to the twisted yarn.

10. The process of claim 9 , wherein the additive is applied in a manner selected from the group consisting of application from a gas state, application from a liquid state, by gas plasma, electrochemically from a solution, by particle infiltration, by fiber infiltration, and combinations thereof.

11. The process of claim 9 , wherein the additive is selected from the group consisting of the binding agent, the species that enhances yarn electrical conductivity, and combinations thereof.

12. The process of claim 9 , wherein the pre-primary assembly is a forest of carbon nanotubes.

13. The process of claim 12 , wherein the additive is applied in a manner selected from the group consisting of application from a gas state, application from a liquid state, by gas plasma, electrochemically from a solution, by particle infiltration, by fiber infiltration, and combinations thereof.

14. The process of claim 12 , wherein the additive is selected from the group consisting of the binding agent, the species that enhances yarn electrical conductivity, and combinations thereof.

15. The process of claim 1 , wherein the step of applying the enhancing agent to the yarn, ribbon or sheet to form the composite yarn, ribbon or sheet comprises the enhancing agent increasing at least one of an electrical conductivity and a tensile strength of the composite yarn, ribbon or sheet as compared to the yarn, ribbon, or sheet before the step of applying.

16. The process of claim 1 , wherein the step of applying the enhancing agent to the yarn, ribbon or sheet to form the composite yarn, ribbon or sheet comprises infiltrating the enhancing agent to the yarn, ribbon or sheet to form the composite yarn.

17. The process of claim 5 , wherein the step of applying the electrically conducting material to form the composite yarn, ribbon or sheet, comprises increasing the electrical conductivity of the composite yarn, ribbon or sheet as compared to a yarn, ribbon, or sheet comprising the nanofibers made by the process without the step of applying the electrically conducting material.

18. The process of claim 5 , wherein the step of applying the electrically conducting material to form the composite yarn, ribbon or sheet, comprises infiltrating the electrically conducting material to form the composite yarn, ribbon or sheet.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 9, 2017
From: ZHANG, MEI; FANG, SHAOLI; BAUGHMAN, RAY H.; ZAKHIDOV, ANVAR ABDULAHADOVIC; ALIEV, ALI E.; LI, SERGEY; WILLIAMS, CHRIS
To: BOARD OF REGENTS, THE UNIVERSITY OF TEXAS SYSTEM
Reel/Frame 040904/0985 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 9, 2017
From: ATKINSON, KENNETH ROSS
To: COMMONWEALTH SCIENTIFIC AND INDUSTRIAL RESEARCH ORGANISATION
Reel/Frame 040905/0082 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 9, 2017
From: COMMONWEALTH SCIENTIFIC INDUSTRIAL RESEARCH ORGANISATION
To: BOARD OF REGENTS, THE UNIVERSITY OF TEXAS SYSTEM
Reel/Frame 040905/0146 →
Continuity (4)
Division 14332632 · Jul 16, 2014
Continuation 11718954
Provisional Application 60702444 · Jul 26, 2005
Related Publication 20170096750A1 · Apr 6, 2017