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Fractionation of SWNT nucleic acid complexes by agarose gel electrophoresis

机译:琼脂糖凝胶电泳分离SWNT核酸复合物

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摘要

We show that aqueous dispersions of single-walled carbon nanotubes (SWNTs), prepared with the aid of nucleic acids (NAs) such as RNA or DNA, can be separated into fractions using agarose gel electrophoresis. In a DC electric field, SWNT NA complexes migrate in the gel in the direction of positive potential to form well-defined bands. Raman spectroscopy as a function of band position shows that nanotubes having different spectroscopic properties possess different electrophoretic mobilities. The migration patterns for SWNT RNA and SWNT DNA complexes differ. Parallel elution of the SWNT NA complexes from the gel during electrophoresis and subsequent characterization by AFM reveals differences in nanotube diameter, length and curvature. The results suggest that fractionation of nanotubes can be achieved by this procedure. We discuss factors affecting the mobility of the nanotube complexes and propose analytical applications of this technique.
机译:我们表明,单壁碳纳米管(SWNTs)的水分散体,借助核酸(NAs)如RNA或DNA制备,可以使用琼脂糖凝胶电泳分离成级分。在直流电场中,SWNT NA复合物在凝胶中向正电势方向迁移,形成清晰的条带。拉曼光谱作为能带位置的函数表明,具有不同光谱性质的纳米管具有不同的电泳迁移率。 SWNT RNA和SWNT DNA复合物的迁移模式不同。电泳过程中凝胶中SWNT NA复合物的平行洗脱以及随后的AFM表征揭示了纳米管直径,长度和曲率的差异。结果表明,可以通过该程序实现纳米管的分级分离。我们讨论了影响纳米管配合物迁移率的因素,并提出了该技术的分析应用。

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