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Selective separation of single-walled carbon nanotubes in aqueous solution by assembling redox nanoclusters

机译:选择性分离单壁碳碳纳米管在水溶液组装氧化还原发光机制

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The selective separation of soluble and individual single-walled carbon nanotubes (SWCNTs) in aqueous solution is a key step for harnessing the extraordinary properties of these materials. Manipulating the strong van der Waals intertube interactions between the SWCNT bundles is very important in selective separation, which is a long-standing challenge. Here we reported the ability of redox polyoxometalate clusters to modulate the intertube π–π stacking interaction through electron transfer and achieved the diameter-selective separation of SWCNTs in a surfactant aqueous solution. The large-diameter SWCNTs concentrated at ∼1.3–1.4 nm were selectively separated when ∼1 nm clusters encapsulated within the tube cavity, and the dispersion of subnanometer ∼0.7–0.9 nm SWCNTs was boosted when clusters were adsorbed on the outer surface of small-diameter nanotubes. The mechanism of diameter-selective separation of SWCNTs associated with the size-dependent interaction between cluster-tubes and the steric hindrance effect of clusters was revealed by optical absorption and Raman spectroscopy. This simple method thus enables the selective separation of individual high-quality SWCNTs in aqueous solutions without harsh sonication with the potential for other separation applications.
机译:可溶性和个人的选择性分离单壁碳纳米管(SWCNTs)对利用水溶液是一个关键的步骤非凡的这些材料的属性。操纵强范德华intertubeSWCNT包非常之间的相互作用是一个重要的选择性分离长期的挑战。氧化还原能力polyoxometalate集群调整intertubeπ-π堆积相互作用通过电子转移和实现了diameter-selective SWCNTs的分离表面活性剂水溶液。SWCNTs集中在1.3∼-1.4海里选择性分离当∼1 nm集群封装的管腔内,分散subnanometer 0.7∼-0.9 nm SWCNTs提高了集群吸附时外表面直径较小的纳米管。diameter-selective分离机制SWCNTs与尺度依赖的关联cluster-tubes之间的相互作用和空间阻碍了集群的影响光学吸收和拉曼光谱。简单的方法从而使选择性个人优质SWCNTs的分离水解决方案没有严厉的声波降解法其他分离应用程序的可能性。

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