True solutions of single-walled carbon nanotubes for assembly into macroscopic materials

被引:0
|
作者
Virginia A. Davis
A. Nicholas G. Parra-Vasquez
Micah J. Green
Pradeep K. Rai
Natnael Behabtu
Valentin Prieto
Richard D. Booker
Judith Schmidt
Ellina Kesselman
Wei Zhou
Hua Fan
W. Wade Adams
Robert H. Hauge
John E. Fischer
Yachin Cohen
Yeshayahu Talmon
Richard E. Smalley
Matteo Pasquali
机构
[1] Richard E. Smalley Institute for Nanoscale Science and Technology,Department of Chemical and Biomolecular Engineering
[2] Rice University,Department of Chemistry
[3] Rice University,Department of Chemical Engineering
[4] Rice University,Department of Material Science and Engineering
[5] Technion–Israel Institute of Technology,undefined
[6] University of Pennsylvania,undefined
[7] Present address: Department of Chemical Engineering,undefined
[8] Auburn University,undefined
[9] Auburn,undefined
[10] Alabama 36849,undefined
[11] USA (V.A.D.); Department of Chemical Engineering,undefined
[12] Texas Tech University,undefined
[13] Lubbock,undefined
[14] Texas 79409,undefined
[15] USA (M.J.G.),undefined
来源
Nature Nanotechnology | 2009年 / 4卷
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摘要
Translating the unique characteristics of individual single-walled carbon nanotubes into macroscopic materials such as fibres and sheets has been hindered by ineffective assembly. Fluid-phase assembly is particularly attractive, but the ability to dissolve nanotubes in solvents has eluded researchers for over a decade. Here, we show that single-walled nanotubes form true thermodynamic solutions in superacids, and report the full phase diagram, allowing the rational design of fluid-phase assembly processes. Single-walled nanotubes dissolve spontaneously in chlorosulphonic acid at weight concentrations of up to 0.5wt%, 1,000 times higher than previously reported in other acids. At higher concentrations, they form liquid-crystal phases that can be readily processed into fibres and sheets of controlled morphology. These results lay the foundation for bottom-up assembly of nanotubes and nanorods into functional materials.
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页码:830 / 834
页数:4
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