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自制X射线发射光谱仪——开发一种廉价、通用且易于制造的X射线发射光谱分析仪和样品输送系统。

DIY XES - development of an inexpensive, versatile, and easy to fabricate XES analyzer and sample delivery system.

作者信息

Jensen Scott C, Sullivan Brendan, Hartzler Daniel A, Pushkar Yulia

机构信息

Department of Physics and Astronomy, Purdue University, West Lafayette, IN 47907, USA.

出版信息

Xray Spectrom. 2019 Sep-Oct;48(5):336-344. doi: 10.1002/xrs.3005. Epub 2019 Feb 13.

Abstract

The application of X-ray emission spectroscopy (XES) has grown substantially with the development of X-ray free electron lasers, third and fourth generation synchrotron sources and high-power benchtop sources. By providing the high X-ray flux required for XES, these sources broaden the availability and application of this method of probing electronic structure. As the number of sources increase, so does the demand for X-ray emission detection and sample delivery systems that are cost effective and customizable. Here, we present a detailed fabrication protocol for von Hamos X-ray optics and give details for a 3D-printed spectrometer design. Additionally, we outline an automated, externally triggered liquid sample delivery system that can be used to repeatedly deliver nanoliter droplets onto a plastic substrate for measurement. These systems are both low cost, efficient and easy to recreate or modify depending on the application. A low cost multiple X-ray analyzer system enables measurement of dilute samples, whereas the sample delivery limits sample loss and replaces spent sample with fresh sample in the same position. While both systems can be used in a wide range of applications, the design addresses several challenges associated specifically with time-resolved XES (TRXES). As an example application, we show results from TRXES measurements of photosystem II, a dilute, photoactive protein.

摘要

随着X射线自由电子激光器、第三代和第四代同步辐射源以及高功率台式光源的发展,X射线发射光谱学(XES)的应用有了显著增长。通过提供XES所需的高X射线通量,这些光源拓宽了这种探测电子结构方法的可用性和应用范围。随着光源数量的增加,对具有成本效益且可定制的X射线发射检测和样品输送系统的需求也在增加。在这里,我们展示了冯哈莫斯X射线光学器件的详细制造协议,并给出了3D打印光谱仪设计的细节。此外,我们概述了一种自动的、外部触发的液体样品输送系统,该系统可用于将纳升级液滴反复输送到塑料基板上进行测量。这些系统成本低、效率高,并且根据应用情况易于重新创建或修改。低成本的多X射线分析仪系统能够测量稀释样品,而样品输送则限制了样品损失,并在同一位置用新鲜样品替换用过的样品。虽然这两种系统都可用于广泛的应用,但该设计解决了一些与时间分辨XES(TRXES)特别相关的挑战。作为一个示例应用,我们展示了光系统II(一种稀释的光活性蛋白)的TRXES测量结果。

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