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首页> 外文期刊>Nanoscale >Highly efficient electroosmotic flow through functionalized carbon nanotube membranes
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Highly efficient electroosmotic flow through functionalized carbon nanotube membranes

机译:高效电渗流量通过功能化碳纳米管膜

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Carbon nanotube membranes with inner diameter ranging from 1.5-7 nm were examined for enhanced electroosmotic flow. After functionalization via electrochemical diazonium grafting and carbodiimide coupling reaction, it was found that neutral caffeine molecules can be efficiently pumped via electroosmosis. An electroosmotic velocity as high as 0.16 cm s~(-1) V~(-1) has been observed. Power efficiencies were 25-110 fold improved compared to related nanoporous materials, which has important applications in chemical separations and compact medical devices. Nearly ideal electroosmotic flow was seen in the case where the mobile cation diameter nearly matched the inner diameter of the single-walled carbon nanotube resulting in a condition of using one ion is to pump one neutral molecule at equivalent concentrations.
机译:碳纳米管膜的内径从1.5 7海里进行增强电渗流量。电化学嫁接和重氮碳化二亚胺偶联反应,它发现中性咖啡因分子可以有效通过电渗泵。速度高达0.16厘米s ~ (1) V ~ (1)被观察到。褶皱相比改进相关的纳米多孔材料,具有重要的应用化学分离和紧凑的医疗设备。近理想的电渗流量情况下,移动阳离子直径近单壁的内径相匹配碳纳米管的使用的一个条件一个离子泵一个中性分子当量浓度。

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