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Achievement of Diffusional Independence at Nanoscale Liquid Liquid Interfaces within Arrays

机译:阵列内纳米级液-液界面扩散独立性的实现

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In this work, independent radial diffusion at arrayed nanointerfaces between two immiscible electrolyte solutions (nanoITIES) was achieved. The arrays were formed at nanopores fabricated by focused ion beam milling of silicon nitride (SiN) membranes, enabling the reproducible and systematic design of five arrays with different ratios of pore center-to-center distance (r(c)) to pore radius (r(a)). Voltammetry across water1,6-dichlorohexane nanoITIES formed at these arrays was examined by the interfacial transfer of tetrapropylammonium ions. The diffusion-limited ion-transfer current increased with the ratio r(c)/r(a), reaching a plateau for r(c)/r(a) >= 56, which was equivalent to the theoretical current for radial diffusion to an array of independent nanoITIES. As a result, mass transport to the nanoITIES arrays was greatly enhanced due to the decreased overlap of diffusion zones at adjacent nanoITIES, allowing each interface in the array to behave independently. When the r(c)/r(a) ratio increased from 13 to 56, the analytical performance parameters of sensitivity and limit of detection were improved from 0.50 (+/- 0.02) A M-1 to 0.76 (+/- 0.02) A M-1 and from 0.101 (+/- 0.003) mu M to 0.072 (+/- 0.002) mu M, respectively. These results provide an experimental basis for the design of arrayed nanointerfaces for electrochemical sensing.
机译:在这项工作中,实现了在两个不混溶的电解质溶液(纳米)之间排列的纳米界面的独立径向扩散。阵列形成在通过聚焦离子束铣削氮化硅(SiN)膜而制造的纳米孔上,从而可重现和系统地设计五个具有不同孔中心距(r(c))与孔半径(r)比率的阵列。 r(a))。跨水的伏安法通过四丙基铵离子的界面转移来检查在这些阵列上形成的1,6-二氯己烷纳米级。限制扩散的离子转移电流随比率r(c)/ r(a)的增加而增大,达到r(c)/ r(a)> = 56的平稳状态,这相当于径向扩散至一系列独立的纳米技术。结果,由于相邻nanoITIES上扩散区的重叠减少,大大提高了向nanoITIES阵列的质量传输,从而允许阵列中的每个界面独立运行。当r(c)/ r(a)的比例从13增加到56时,灵敏度和检测限的分析性能参数从0.50(+/- 0.02)A M-1提高到0.76(+/- 0.02) M-1和0.101(+/- 0.003)μM至0.072(+/- 0.002)μM.这些结果为电化学传感阵列纳米界面的设计提供了实验基础。

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