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具有用于液体原位电子显微镜检查的微流体通道的单片芯片系统。

Monolithic chip system with a microfluidic channel for in situ electron microscopy of liquids.

作者信息

Jensen Eric, Burrows Andrew, Mølhave Kristian

机构信息

1 Technical University of Denmark, DTU Nanotech, Ørsteds Plads, Building 345E, 2800 Kgs Lyngby, Denmark.

2 Technical University of Denmark, DTU Cen, Fysikvej, Building 307, 2800 Kgs. Lyngby, Denmark.

出版信息

Microsc Microanal. 2014 Apr;20(2):445-51. doi: 10.1017/S1431927614000300. Epub 2014 Apr 9.

Abstract

Electron microscopy of enclosed liquid samples requires the thinnest possible membranes as enclosing windows as well as nanoscale liquid sample thickness to achieve the best possible resolution. Today liquid sample systems for transmission electron microscopy (TEM) are typically made from two sandwiched microchips with thin membranes. We report on a new microfabricated chip system based on a monolithic design that enables membrane geometry on the scale of a few micrometers. The design is intended to reduce membrane deflection when the system is under pressure, a microfluidic channel for improved flow geometry, and a better space angle for auxiliary detectors such as energy-dispersive X-ray spectroscopy. We explain the system design and fabrication and show the first successful TEM images of liquid samples in the chips.

摘要

对封闭液体样品进行电子显微镜观察时,需要尽可能薄的膜作为封闭窗口,同时液体样品厚度要达到纳米级,以实现最佳分辨率。如今,用于透射电子显微镜(TEM)的液体样品系统通常由两个带有薄膜的夹层微芯片制成。我们报道了一种基于单片设计的新型微制造芯片系统,该系统能够实现几微米尺度的膜几何形状。该设计旨在减少系统受压时膜的挠度,提供用于改善流动几何形状的微流体通道,以及为能量色散X射线光谱等辅助探测器提供更好的空间角度。我们阐述了系统设计与制造过程,并展示了芯片中液体样品的首张成功TEM图像。

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