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Microstructured Photonic Fibers as Multichannel Electrospray Emitters

机译:微结构光子纤维作为多通道电喷雾发射器

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摘要

Novel multichannel electrospray emitters are presented that use silica-based microstructured fibers (MSFs) to split the flow allowing efficient desolvation during electrospray. The MSFs investigated in this study possess 30-168 individual fluidic channels (each channel being 5 (mu)m in diameter) that form a 2D emitting array. Multiple flow paths afford stable electrospray at flow rates ranging from the microspray (e.g., 1000 nL/min) to the nano-electrospray (e.g., 10 nL/min) regime with moderate to negligible flow-induced backpressures. The electrospray stability of highly aqueous solutions (up to 99.9percent water with 0.1percent acetic acid) is enhanced through modification of the emitting surface with a hydrophobic silylation reagent (chlorotrimethylsilane). Furthermore, by successfully spraying highly concentrated salt solutions, this study demonstrates that multichannel MSF emitters provide enhanced robustness to clogging, leading to increased operational throughput.
机译:提出了新颖的多通道电喷雾发射器,该发射器使用基于二氧化硅的微结构纤维(MSF)来分流,从而在电喷雾过程中实现高效去溶剂化。在该研究中研究的MSF具有形成二维发射阵列的30-168个单独的流体通道(每个通道的直径为5μm)。多个流动路径以从微喷雾(例如1000 nL / min)到纳米电喷雾(例如10 nL / min)范围的流速提供稳定的电喷雾,并具有中等到可忽略不计的流致背压。通过使用疏水性甲硅烷基化试剂(三甲基氯硅烷)修饰发射表面,可以提高高水溶液(至多99.9%的水和0.1%的乙酸)的电喷雾稳定性。此外,通过成功地喷洒高浓度盐溶液,该研究表明多通道MSF发射器可增强堵塞的坚固性,从而提高操作产量。

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