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In Situ Industrial Bimetallic Catalyst Characterization using Scanning Transmission Electron Microscopy and X‐ray Absorption Spectroscopy at One Atmosphere and Elevated Temperature

机译:在一个大气压和升高的温度下使用扫描透射电子显微镜和X射线吸收光谱法进行原位工业双金属催化剂表征

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摘要

We have developed a new experimental platform for in situ scanning transmission electron microscope (STEM) energy dispersive X‐ray spectroscopy (EDS) which allows real time, nanoscale, elemental and structural changes to be studied at elevated temperature (up to 1000 °C) and pressure (up to 1 atm). Here we demonstrate the first application of this approach to understand complex structural changes occurring during reduction of a bimetallic catalyst, PdCu supported on TiO2, synthesized by wet impregnation. We reveal a heterogeneous evolution of nanoparticle size, distribution, and composition with large differences in reduction behavior for the two metals. We show that the data obtained is complementary to in situ STEM electron energy loss spectroscopy (EELS) and when combined with in situ X‐ray absorption spectroscopy (XAS) allows correlation of bulk chemical state with nanoscale changes in elemental distribution during reduction, facilitating new understanding of the catalytic behavior for this important class of materials.
机译:我们为原位扫描透射电子显微镜(STEM)能量色散X射线光谱仪(EDS)开发了一个新的实验平台,该平台允许在高温(最高1000 C)下研究实时,纳米级,元素和结构的变化和压力(最大1 atm)。在这里,我们展示了这种方法的首次应用,以了解在通过湿法浸渍合成的双金属催化剂(负载在TiO2上的PdCu)还原过程中发生的复杂结构变化。我们揭示了纳米颗粒尺寸,分布和组成的异质演化,两种金属的还原行为差异很大。我们显示获得的数据是对原位STEM电子能量损失谱(EELS)的补充,当与原位X射线吸收谱(XAS)结合使用时,可以使还原过程中大分子化学状态与元素分布的纳米级变化相关,从而促进新的了解这一重要材料类别的催化行为。

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