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使用原位X射线拉曼光谱跟踪丙烷氧化脱氢过程中氮化硼上的活性相行为。

Tracking Active Phase Behavior on Boron Nitride during the Oxidative Dehydrogenation of Propane Using Operando X-ray Raman Spectroscopy.

作者信息

Cendejas Melissa C, Paredes Mellone Oscar A, Kurumbail Unni, Zhang Zisheng, Jansen Jacob H, Ibrahim Faysal, Dong Son, Vinson John, Alexandrova Anastassia N, Sokaras Dimosthenis, Bare Simon R, Hermans Ive

机构信息

Department of Chemistry, University of Wisconsin─Madison, Madison, Wisconsin 53706, United States.

Stanford Synchrotron Radiation Lightsource, SLAC National Accelerator Laboratory, Menlo Park, California 94025, United States.

出版信息

J Am Chem Soc. 2023 Nov 29;145(47):25686-25694. doi: 10.1021/jacs.3c08679. Epub 2023 Nov 6.

Abstract

Hexagonal boron nitride (hBN) is a highly selective catalyst for the oxidative dehydrogenation of propane (ODHP) to propylene. Using a variety of characterization techniques, the activity of the catalyst has been attributed to the formation of an amorphous boron oxyhydroxide surface layer. The ODHP reaction mechanism proceeds via a combination of surface mediated and gas phase propagated radical reactions with the relative importance of both depending on the surface-to-void-volume ratio. Here we demonstrate the unique capability of X-ray Raman spectroscopy (XRS) to investigate the oxyfunctionalization of the catalyst under reaction conditions (1 mm outer diameter reactor, 500 to 550 °C, = 30 kPa CH, 15 kPa O, 56 kPa He). We probe the effect of a water cofeed on the surface of the activated catalyst and find that water removes boron oxyhydroxide from the surface, resulting in a lower reaction rate when the surface reaction dominates and an enhanced reaction rate when the gas phase contribution dominates. Computational description of the surface transformations at an atomic-level combined with high precision XRS spectra simulations with the OCEAN code rationalize the experimental observations. This work establishes XRS as a powerful technique for the investigation of light element-containing catalysts under working conditions.

摘要

六方氮化硼(hBN)是丙烷氧化脱氢(ODHP)制丙烯的高选择性催化剂。通过使用多种表征技术,催化剂的活性归因于形成了无定形硼羟基氧化物表面层。ODHP反应机理通过表面介导和气相传播的自由基反应相结合进行,两者的相对重要性取决于表面与空隙体积比。在此,我们展示了X射线拉曼光谱(XRS)在反应条件下(外径1毫米的反应器,500至550°C, = 30 kPa CH,15 kPa O,56 kPa He)研究催化剂氧官能化的独特能力。我们探究了共进水对活化催化剂表面的影响,发现水从表面去除硼羟基氧化物,当表面反应占主导时导致反应速率降低,而当气相贡献占主导时反应速率提高。结合使用OCEAN代码进行的高精度XRS光谱模拟,对原子水平的表面转变进行计算描述,使实验观察结果合理化。这项工作确立了XRS作为研究工作条件下含轻元素催化剂的强大技术。

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