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结合质谱的毛细管电泳,来自具有集成石墨电喷雾尖端的聚合物修饰聚二甲基硅氧烷微芯片。

Capillary electrophoresis coupled to mass spectrometry from a polymer modified poly(dimethylsiloxane) microchip with an integrated graphite electrospray tip.

作者信息

Dahlin Andreas Pettersson, Wetterhall Magnus, Liljegren Gustav, Bergström Sara K, Andrén Per, Nyholm Leif, Markides Karin E, Bergquist Jonas

机构信息

Department of Analytical Chemistry, Uppsala University, PO Box 599, 751 24 Uppsala, Sweden.

出版信息

Analyst. 2005 Feb;130(2):193-9. doi: 10.1039/b414592e. Epub 2005 Jan 6.

Abstract

Hybrid capillary-poly(dimethysiloxane)(PDMS) microchips with integrated electrospray ionization (ESI) tips were directly fabricated by casting PDMS in a mould. The shapes of the emitter tips were drilled into the mould, which produced highly reproducible three-dimensional tips. Due to the fabrication method of the microfluidic devices, no sealing was necessary and it was possible to produce a perfect channel modified by PolyE-323, an aliphatic polyamine coating agent. A variety of different coating procedures were also evaluated for the outside of the emitter tip. Dusting graphite on a thin unpolymerised PDMS layer followed by polymerisation was proven to be the most suitable procedure. The emitter tips showed excellent electrochemical properties and durabilities. The coating of the emitter was eventually passivated, but not lost, and could be regenerated by electrochemical means. The excellent electrochemical stability was further confirmed in long term electrospray experiments, in which the emitter sprayed continuously for more than 180 h. The PolyE-323 was found suitable for systems that integrate rigid fused silica and soft PDMS technology, since it simply could be applied successfully to both materials. The spray stability was confirmed from the recording of a total ion chromatogram in which the electrospray current exhibited a relative standard deviation of 3.9% for a 30 min run. CE-ESI-MS separations of peptides were carried out within 2 min using the hybrid PDMS chip resulting in similar efficiencies as for fused silica capillaries of the same length and thus with no measurable band broadening effects, originating from the PDMS emitter.

摘要

通过在模具中浇铸聚二甲基硅氧烷(PDMS)直接制备了带有集成电喷雾电离(ESI)尖端的混合毛细管 - PDMS微芯片。将发射器尖端的形状钻到模具中,从而制造出高度可重复的三维尖端。由于微流控装置的制造方法,无需密封,并且有可能制备出由脂肪族多胺涂层剂PolyE - 323修饰的完美通道。还对发射器尖端外部评估了各种不同的涂层程序。事实证明,在未聚合的薄PDMS层上撒上石墨然后进行聚合是最合适的程序。发射器尖端显示出优异的电化学性能和耐久性。发射器的涂层最终被钝化,但并未丧失,并且可以通过电化学方法再生。在长期电喷雾实验中进一步证实了优异的电化学稳定性,其中发射器连续喷雾超过180小时。发现PolyE - 323适用于集成刚性熔融石英和软PDMS技术的系统,因为它可以简单地成功应用于这两种材料。通过记录总离子色谱图证实了喷雾稳定性,其中在30分钟的运行中电喷雾电流表现出3.9%的相对标准偏差。使用混合PDMS芯片在2分钟内完成了肽的CE - ESI - MS分离,其效率与相同长度的熔融石英毛细管相似,因此没有可测量的源自PDMS发射器的谱带展宽效应。

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