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一种用于微流控和纳米电喷雾质谱分析的实用接口。

A practical interface for microfluidics and nanoelectrospray mass spectrometry.

作者信息

Freire Sergio L S, Yang Hao, Wheeler Aaron R

机构信息

Department of Chemistry, University of Toronto, Toronto, ON, Canada.

出版信息

Electrophoresis. 2008 May;29(9):1836-43. doi: 10.1002/elps.200700661.

Abstract

We report a new method for fabricating nanospray ionization tips for MS, formed from glass substrates and the inert polymer, parylene-C. Using a single photolithography step, the emitters are formed contiguously with microchannels, such that no dead volumes are observed. In addition, because the devices are very thin (approximately 0.3 mm) and the tips are formed at rectangular corners, the Taylor cone volumes are small, which makes the method attractive for future integration with microfluidic separations. Device performance was demonstrated by evaluating diverse analytes, ranging from synthetic polymers, to peptides, to nucleic acids. For all analytes, performance was similar to that of conventional emitters (pulled-glass capillaries and the Agilent HPLC Chip) with the advantage of rapid, batch fabrication of identical devices.

摘要

我们报告了一种用于制造质谱纳米喷雾电离尖端的新方法,该尖端由玻璃基板和惰性聚合物聚对二甲苯-C制成。通过单一光刻步骤,发射器与微通道连续形成,因此未观察到死体积。此外,由于器件非常薄(约0.3毫米)且尖端在矩形角处形成,泰勒锥体积小,这使得该方法对于未来与微流体分离的集成具有吸引力。通过评估从合成聚合物到肽再到核酸等多种分析物来证明器件性能。对于所有分析物,性能与传统发射器(拉制玻璃毛细管和安捷伦高效液相色谱芯片)相似,具有快速批量制造相同器件的优势。

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