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Anisotropic micro-cloths fabricated from DNA-stabilized carbon nanotubes: one-stop manufacturing with electrode needles

机译:由DNA稳定的碳纳米管制成的各向异性微布:使用电极针的一站式制造

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摘要

Among a variety of solution-based approaches to fabricate anisotropic films of aligned carbon nanotubes (CNTs), we focus on the dielectrophoretic assembly method using AC electric fields in DNA-stabilized CNT suspensions. We demonstrate that a one-stop manufacturing system using electrode needles can draw anisotropic DNA-CNT hybrid films of 10 to 100 µm in size (i.e., free-standing DNA-CNT micro-cloths) from the remaining suspension into the atmosphere while maintaining structural order. It has been found that a maximal degree of polarization (ca. 40%) can be achieved by micro-cloths fabricated from a variety of DNA-CNT mixtures. Our results suggest that the one-stop method can impart biocompatibility to the downsized CNT films and that the DNA-stabilized CNT micro-cloths directly connected to an electrode could be useful for biofuel cells in terms of electron transfer and/or enzymatic activity.Electronic supplementary materialThe online version of this article (doi:10.1186/s11671-015-0817-3) contains supplementary material, which is available to authorized users.
机译:在制造基于取向碳纳米管(CNT)各向异性膜的各种基于溶液的方法中,我们集中于在DNA稳定的CNT悬浮液中使用交流电场的介电泳组装方法。我们证明了使用电极针的一站式制造系统可以从剩余的悬浮液向大气中绘制尺寸为10至100 µm的各向异性DNA-CNT杂化膜(即,独立的DNA-CNT微布),同时保持结构订购。已经发现,由多种DNA-CNT混合物制成的微布可以实现最大程度的极化(约40%)。我们的结果表明,一站式方法可以赋予缩小的CNT膜生物相容性,直接连接到电极的DNA稳定的CNT微布在电子转移和/或酶活性方面可能对生物燃料电池有用。补充材料本文的在线版本(doi:10.1186 / s11671-015-0817-3)包含补充材料,授权用户可以使用。

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