Dispersing Individual Single-Wall Carbon Nanotubes in Aqueous Surfactant Solutions below the cmc
Диспергирование индивидуальных одностенных углеродных нанотрубок в водных растворах поверхностно-активных веществ ниже ККМ
2009-12-11
SCID: 54.1/gwbtb2ss
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dissipative particle dynamicssingle-wall carbon nanotubessodium dodecyl sulfatesubmicellar dispersionssurfactant adsorption
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Abstract (AI)
Dispersions of single-wall carbon nanotubes (SWCNTs) in surfactant solutions below the critical micelle concentration (cmc) have been studied theoretically and experimentally. Dissipative particle dynamics (DPD) simulations of a coarse-grained model predict that surfactant adsorption on small diameter tubes is dominated by aggregation of the surfactant molecules into adsorbed micelles at C ≈ 0.3 C cmc . We also find that the surfactant adsorption is nearly complete at a concentration of around C ≈ 0.5 C cmc . Further increase of the surfactant concentration has only minor effects on the radial density of surfactant headgroups, indicating that SWCNT may be fully stabilized in solutions below the cmc. SWCNT dispersions in solutions of anionic surfactants sodium dodecyl sulfate (SDS) and sodium dodecylbenzenesulfonate (SDBS) below the cmc show a significant fraction of dispersed individual tubes and small bundles, in agreement with the model calculations.
Key Findings
1
DPD simulations predict that surfactant adsorption on small-diameter SWCNTs is dominated by aggregation into adsorbed micelles at approximately 0.3 times the cmc.
2
Experiments with SDS and SDBS solutions below the cmc produce substantial fractions of dispersed individual SWCNTs and small bundles, consistent with simulations.
3
Increasing surfactant concentration beyond approximately 0.5 cmc produces only minor changes in surfactant headgroup radial density, indicating stabilization below the cmc.
4
Surfactant adsorption on SWCNTs is nearly complete at approximately 0.5 times the cmc.
Research Object
Single-wall carbon nanotubes (SWCNTs) dispersed in aqueous anionic surfactant solutions below the critical micelle concentration (cmc)
Research Subject
Surfactant adsorption, micelle aggregation, dispersion, and stabilization of individual SWCNTs and small bundles as functions of surfactant concentration below the cmc
Publication Details
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2009-12-11
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