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Surface Patterning of Carbon Nanotubes Can Enhance Their Penetration through a Phospholipid Bilayer

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Figshare2016-02-23 更新2026-04-29 收录
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https://figshare.com/articles/dataset/Surface_Patterning_of_Carbon_Nanotubes_Can_Enhance_Their_Penetration_through_a_Phospholipid_Bilayer/2690206
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Nanotube patterning may occur naturally upon the spontaneous self-assembly of biomolecules onto the surface of single-walled carbon nanotubes (SWNTs). It results in periodically alternating bands of surface properties, ranging from relatively hydrophilic to hydrophobic, along the axis of the nanotube. Single-chain mean field (SCMF) theory has been used to estimate the free energy of systems in which a surface patterned nanotube penetrates a phospholipid bilayer. In contrast to unpatterned nanotubes with uniform surface properties, certain patterned nanotubes have been identified that display a relatively low and approximately constant system free energy (<±10 kT) as the nanotube traverses through the bilayer. These observations support the hypothesis that the spontaneous self-assembly of biomolecules on the surface of SWNTs may facilitate nanotube transduction through cell membranes.
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2016-02-23
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