论文标题
直接可视化渗透性离子运输
Direct Visualization of Perm-Selective Ion Transportation
论文作者
论文摘要
十年来,纳米级结构中使用纳米制作技术的辅助性离子运输已经进行了广泛的研究。尽管理论和实验进步将现象推向了开创性的创新应用,但其基本观察结果仅取决于间接分析,例如电流 - 电压关系或与纳米结构相邻的荧光成像。在这里,我们首次通过实验表明,使用离子等离子体产生通过纳米结构直接可视化渗透性离子传输。采用微型/纳米流体设备进行微气泡形成,血浆否定和血浆通过纳米结的穿透。直接观察提供了凭借性能性的敏锐证据,即允许阳离子物种和拒绝阴离子物种。此外,由于没有Li+周围的水合壳,我们可以捕获Li+的血浆,该血浆的迁移率低于水+的迁移率,其迁移率低于Na+。这种简单但必不可少的可视化技术将是有效的,这不仅用于推进基本的纳米级电动研究,而且还用于提供新的创新工程应用的见解。
Perm-selective ion transportation in a nanoscale structure has been extensively studied with aids of nanofabrication technology for a decade. While theoretical and experimental advances pushed the phenomenon to seminal innovative applications, its basic observation has relied only on an indirect analysis such as current-voltage relation or fluorescent imaging adjacent to the nanostructures. Here we experimentally, for the first time, demonstrated a direct visualization of perm-selective ion transportation through the nanostructures using an ionic plasma generation. A micro/nanofluidic device was employed for a micro bubble formation, plasma negation and penetration of the plasma through the nanojunction. The direct observation provided a keen evidence of perm-selectivity, i.e. allowing cationic species and rejecting anionic species. Furthermore, we can capture the plasma of Li+, which has lower mobility than Na+ in aqueous state, passed the nanojunction faster than Na+ due to the absence of hydrated shells around Li+. This simple, but essential visualization technique would be effective means not only for advancing the fundamental nanoscale electrokinetic study but also for providing the insight of new innovative engineering applications.