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A quasi in situ TEM grid reactor for decoupling catalytic gas phase reactions and analysis

机译:用于去耦催化气相反应和分析的原位TEM网格反应器准反应器

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We present a versatile grid reactor setup for transmission electron microscopy (TEM), which is able to track catalytic conversion on TEM amounts of sample. It is based on the concept of decoupling catalytic gas-phase reactions from the structural analysis of identical particles before and after reaction. The system has superior properties in terms of image resolution and long-term measurements compared to conventional in situ TEM analysis. Monitoring catalytic conversions on a TEM grid is enabled by proton-transfer reaction mass spectrometry. In addition, identical location imaging benefits from a secure transfer of the sample between TEM and the reactor system by vacuum transfer holders. Using N and Cu/ZnO/Al2O3 as an example we show that structural changes of identical particles or areas of a N foil before and after reactive experiments can be tracked. During catalytic testing the samples are exposed to homogeneous reaction conditions. The concept minimizes electron-sample and electron-atmosphere interactions and can prospectively be considered as complementary tool to in situ TEM analysis.
机译:我们为透射电子显微镜(TEM)提供了一种多功能电网反应器设置,其能够跟踪试样的样品量的催化转化。它基于在反应前后与相同颗粒的结构分析去耦的催化气相反应的概念。与常规原位TEM分析相比,该系统在图像分辨率和长期测量方面具有优异的特性。通过质子转移反应质谱法使TEM网格上的催化转化进行监测。另外,通过真空转移支架,从TEM和反应器系统之间的样品的安全转移,相同的位置成像益处。使用N和Cu / ZnO / Al2O3作为一个例子,我们表明可以跟踪反应实验前后的相同颗粒或N箔区域的结构变化。在催化测试期间,样品暴露于均匀的反应条件。该概念最小化电子样品和电子气氛相互作用,并可前瞻性地被视为原位TEM分析的互补工具。

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