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首页> 外文期刊>Analytical chemistry >Integration of Fully Microfabricated, Three-Dimensionally Sharp Electrospray Ionization Tips with Microfluidic Glass Chips
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Integration of Fully Microfabricated, Three-Dimensionally Sharp Electrospray Ionization Tips with Microfluidic Glass Chips

机译:完全微制造的,3维清晰的电喷雾电离尖端与微流控玻璃芯片的集成

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This paper presents parallel microfabrication of three-dimensionally sharp electrospray ionization emitters made out of glass. For the first time, the fabrication of glass emitters relies only on standard microfabrication techniques (i.e., deposition, photolithography, and wet etching), and all manual machining steps are omitted. We also demonstrate a straightforward integration of the three-dimensionally sharp emitter tip with a microfluidic separation channel, which has been one of the major challenges of micro total chemical analysis systems for the past 15 years. As a result, our microfabrication approach provides glass ESI emitters that allow robust performance from run to run and tip to tip and do not suffer from sample spreading at the microchannel outlet. The repeatability of the signal intensity for parallel tips was shown to be within 8.0% RSD (n = 6), and the migration time repeatability for repeated injections was within 6.2% RSD (n = 6). At best, separation plates of up to 2.7 × 10~5/m were obtained. Since the microfabrication process readily yields three-dimensionally sharp emitter tips, very low ESI voltages (typically 1.4-1.75 kV) suffice for stable ESI, which eventually allows for the use of a variety of different solvent compositions from purely aqueous to high organic content. Here, the advantage of using aqueous conditions is demonstrated in protein analysis.
机译:本文介绍了由玻璃制成的三维锐利电喷雾电离发射器的平行微细加工。第一次,玻璃发射器的制造仅依靠标准的微制造技术(即沉积,光刻和湿蚀刻),并且省略了所有手动加工步骤。我们还演示了将3D尖锐的发射器尖端与微流体分离通道直接集成在一起的方法,这在过去15年中一直是微型化学分析系统的主要挑战之一。因此,我们的微细加工方法可提供玻璃ESI发射器,使发射器自始至终具有稳健的性能,并且不会在微通道出口处散布样品。平行尖端的信号强度可重复性显示在8.0%RSD之内(n = 6),重复进样的迁移时间可重复性在6.2%RSD之内(n = 6)。最佳情况下,获得的分离板最大为2.7×10〜5 / m。由于微细加工过程容易产生三维锐利的发射极尖端,因此非常低的ESI电压(通常为1.4-1.75 kV)足以满足稳定的ESI,最终允许使用从纯水到高有机物含量的各种不同溶剂组合物。在此,在蛋白质分析中证明了使用水性条件的优势。

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