论文标题

机械激活的离子传输跨单位碳纳米管

Mechanically activated ionic transport across single-digit carbon nanotubes

论文作者

Marcotte, Alice, Mouterde, Timothée, Niguès, Antoine, Siria, Alessandro, Bocquet, Lydéric

论文摘要

纳米级的流体和离子运输最近强调了许多外来行为。但是,人工纳米流体设备仍然远离生物系统中现有的晚期功能,例如电和机械激活的运输。在这里,我们关注通过机械和电气强迫的组合,通过2 nm-radius单个多壁碳纳米管(CNT)的离子传输。我们的发现证据以离子电导的形式机械地激活了离子转运,该离子电导量四方面取决于施加的压力。我们的理论研究将这种行为与电气驱动器和机械驱动器之间的复杂相互作用有关,并表明CNT的超级润滑性是获得机械激活运输的先决条件。压力敏感性与在人工系统中首次观察到的生物机械敏感离子通道的响应具有相似之处。这为建立受复杂生物机械启发的新的活跃纳米流体功能铺平了道路。

Fluid and ionic transport at nanoscale recently highlighted a wealth of exotic behaviours. However, the artificial nanofluidic devices are still far from the advanced functionalities existing in biological systems, such as electrically and mechanically activated transport. Here we focus on the ionic transport through 2 nm-radius individual multiwalled carbon nanotubes (CNT), under the combination of mechanical and electrical forcings. Our findings evidence mechanically activated ionic transport under the form of an ionic conductance which depends quadratically on the applied pressure. Our theoretical study relates this behaviour with the complex interplay between electrical and mechanical drivings, and shows that the superlubricity of CNT is a prerequisite to attain mechanically activated transport. The pressure sensitivity shares similarities with the response of biological mechanosensitive ion channels observed here for the first time in an artificial system. This paves the way to build new active nanofluidic functionalities inspired by the complex biological machinery.

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