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首页> 外文期刊>Journal of synchrotron radiation >The TES beamline (8-BM) at NSLS-II: tender-energy spatially resolved X-ray absorption spectroscopy and X-ray fluorescence imaging
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The TES beamline (8-BM) at NSLS-II: tender-energy spatially resolved X-ray absorption spectroscopy and X-ray fluorescence imaging

机译:NSLS-II的TES梁线(8-BM):嫩 - 能量空间分辨X射线吸收光谱和X射线荧光成像

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The tender-energy X-ray spectroscopy (TES) beamline at the National Synchrotron Light Source II (NSLS-II) is now operational for general users. Its scientific mission includes static and in situ X-ray fluorescence imaging and spatially resolved X-ray absorption spectroscopy for characterization of complex heterogeneous, structured and dynamic natural or engineered materials and systems. TES is optimized for the tender-energy range, offering routine operations from 2.0 to 5.5 keV, with capabilities to reach down to 1.2 or up to 8 keV with configuration change. TES is designed as an extended X-ray absorption fine-structure microprobe (EXAFS microprobe) for applications of micrometre-scale EXAFS spectroscopy to heterogeneous samples. Beam size is user-tunable from similar to 2 to 25 mu m. Energy may be scanned on-the-fly or in traditional step scanning. Importantly, the position of the microbeam at the sample location does not move significantly during energy scanning or when changing energy across the entire routine energy range. This enables full EXAFS of a particle or domain the same size as the probe beam, and measurement of the same spot at different energies. In addition, there is no measureable drift in energy calibration (repeatability) scan-to-scan and over 24 h. This is critical where simultaneous calibration measurements are generally not feasible, and for speciation mapping where precise and stable control of incident energy is essential. The sample environment is helium atmosphere at room pressure with infrastructure for in situ electrochemistry and catalysis in small sample cells or microreactors. As the first bend-magnet beamline at NSLS-II, noteworthy commissioning aspects are described. Example measurements are presented to illustrate its capabilities.
机译:国家同步光源II(NSLS-II)的柔性X射线光谱(TES)梁线现在正在为一般用户进行运营。其科学任务包括静态和原位X射线荧光成像和空间分辨的X射线吸收光谱,用于表征复杂的异构,结构化和动态的自然或工程化材料和系统。 TES针对温度的节能进行了优化,提供了2.0到5.5 kev的日常操作,具有扩展到1.2或最多8 kev的功能,配置变更。 TES设计为扩展的X射线吸收细结构微探测(EXAFS微探针),用于微米级EXAFS光谱到异质样品。光束尺寸是用户可调的,类似于2到25 mu m。可以在飞行或传统的阶梯扫描中扫描能量。重要的是,在样品位置处的微观区域的位置在能量扫描期间或在整个常规能量范围内改变能量时不会显着移动。这使得粒子或域的完整外部具有与探针光束相同的尺寸,并测量不同能量的相同点。此外,没有可测量的能量校准(可重复性)扫描到扫描和超过24小时的可测量漂移。这是关键的,其中同时校准测量通常不可行,并且对于物种映射,在那里精确稳定地控制入射能量是必不可少的。样品环境是氦气气氛,在房间压力下,基础设施用于原位电化学和小样品细胞或微反应器中的催化。作为NSLS-II的第一弯曲磁体束线,描述了值得注意的调试方面。提出了示例测量以说明其能力。

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