Jarvas Gabor, Grym Jakub, Foret Frantisek, Guttman Andras
CEITEC - Central European Institute of Technology, Brno, Czech Republic; MTA-PE Translational Glycomics Research Group, MUKKI, University of Pannonia, Veszprem, Hungary.
Electrophoresis. 2015 Feb;36(3):386-92. doi: 10.1002/elps.201400387. Epub 2014 Nov 14.
A microfabricated pneumatic electrospray nebulizer has been developed and evaluated using computer simulations and experimental measurements of the MS signals. The microdevice under development is designed for electrospray MS interfacing without the need to fabricate an electrospray needle and can be used as a disposable or an integral part of a reusable system. The design of the chip layout was supported by computational fluid dynamics simulations. The tested microdevices were fabricated in glass using conventional photolithography, followed by wet chemical etching and thermal bonding. The performance of the microfabricated nebulizer was evaluated by means of TOF-MS with a peptide mixture. It was demonstrated that the nebulizer, operating at supersonic speed of the nebulizing gas, produced very stable nanospray (900 nL/min) as documented by less than 0.1% (SE) fluctuation in total mass spectrometric signal intensity.
一种微制造的气动电喷雾雾化器已通过计算机模拟和质谱信号的实验测量进行了开发和评估。正在开发的微型设备旨在用于电喷雾质谱接口,无需制造电喷雾针,并且可以用作一次性部件或可重复使用系统的一个组成部分。芯片布局的设计得到了计算流体动力学模拟的支持。测试的微型设备是在玻璃中使用传统光刻技术制造的,随后进行湿化学蚀刻和热键合。通过使用肽混合物的飞行时间质谱对微制造雾化器的性能进行了评估。结果表明,该雾化器在雾化气体的超音速下运行,产生了非常稳定的纳米喷雾(900纳升/分钟),总质谱信号强度的波动小于0.1%(标准误差)。