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激光加热、多路复用电喷雾发射器的制作与特性研究。

Fabrication and characterization of laser-heated, multiplexed electrospray emitter.

机构信息

Department of Chemistry, Queen's University, Kingston, ON, CanadaK7L 3N6.

Centre d'optique, photonique et laser (COPL), Université Laval, Quebec, QC, CanadaG1V 0A6.

出版信息

Analyst. 2021 May 4;146(9):2834-2841. doi: 10.1039/d1an00264c.

Abstract

We present a one-step fabrication method for a new multiplexed electrospray emitter with nine parallel micronozzles. The nozzles were formed by wet chemical etching of the end of a microstructured silica fiber containing nine 10 μm flow channels. By carefully adjusting the water flow through the channels while etching, we controlled the shape of the conical micronozzles and were able to obtain conditions under which the micronozzles, together with the flow channels, formed optical micro-axicon lenses. When 1064 nm light was guided through the flow channels and focused by the micro-axicon lenses into the Taylor cones, we were able to increase the desolvation of a model analyte and thereby increased the spray current produced by the emitter. This work paves the way towards a rapidly modulated mass-spectrometry source having a greatly enhanced throughput.

摘要

我们提出了一种新的一步法制造多通道电喷雾发射器的方法,该发射器具有九个平行的微喷嘴。这些喷嘴是通过含有九个 10μm 流道的微结构硅光纤的湿法化学刻蚀形成的。通过在刻蚀过程中仔细调节通道中的水流,我们控制了锥形微喷嘴的形状,并能够获得在该条件下,微喷嘴与流道一起形成光学微轴棱锥透镜。当 1064nm 光通过流道并被微轴棱锥透镜聚焦到泰勒锥时,我们能够增加模型分析物的去溶剂化,从而增加由发射器产生的喷雾电流。这项工作为实现具有更高通量的快速调制质谱源铺平了道路。

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