Watschinger Maximilian, Ploner Kevin, Winkler Daniel, Kunze-Liebhäuser Julia, Klötzer Bernhard, Penner Simon
Department of Physical Chemistry, University of Innsbruck, Innrain 52c, A-6020 Innsbruck, Austria.
Rev Sci Instrum. 2021 Feb 1;92(2):024105. doi: 10.1063/5.0041437.
We describe a new type of operando Fourier transform infrared (FTIR)-mass spectrometry setup for surface-chemical and reactivity characterization of heterogeneous catalysts. On the basis of a sophisticated all-quartz FTIR reactor cell, capable of operating between room temperature and 1000 °C in reactive gas atmospheres, the setup offers a unique opportunity to simultaneously collect and accordingly correlate FTIR surface-chemical adsorption data of the active catalyst state and FTIR gas phase data with complementary reactivity data obtained via mass spectrometry in situ. The full set of catalytic operation modes (recirculating static and flow reactor conditions) is accessible and can be complemented with a variety of temperature-programmed reaction modes or thermal desorption. Due to the unique transfer process involving a home-built portable glovebox to avoid air exposure, a variety of complementary quasi in situ characterization methods for the pre- and post-reaction catalyst states become accessible. We exemplify the capabilities for additional x-ray photoelectron spectroscopy characterization of surface-chemical states, highlighting the unique strength of combining adsorption, electronic structure, and reactivity data to gain detailed insight into the reactive state of a Cu/ZrO heterogeneous catalyst during methanol steam reforming operation.
我们描述了一种新型的原位傅里叶变换红外(FTIR)-质谱联用装置,用于多相催化剂的表面化学和反应活性表征。基于一个复杂的全石英FTIR反应池,该反应池能够在室温至1000°C的反应性气体气氛中运行,此装置提供了一个独特的机会,可同时收集活性催化剂状态的FTIR表面化学吸附数据和FTIR气相数据,并将其与通过原位质谱获得的互补反应活性数据进行相应关联。全套催化操作模式(循环静态和流动反应器条件)均可实现,并且可以辅以各种程序升温反应模式或热脱附。由于采用了独特的转移过程,包括一个自制的便携式手套箱以避免空气暴露,因此可以获得多种用于反应前和反应后催化剂状态的互补准原位表征方法。我们举例说明了用于表面化学状态的额外X射线光电子能谱表征的能力,突出了结合吸附、电子结构和反应活性数据以深入了解甲醇蒸汽重整操作过程中Cu/ZrO多相催化剂反应状态的独特优势。