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为扰动增强型俄歇光电子能谱(APXPS)实验同步气体注入和时间分辨数据采集。

Synchronizing gas injections and time-resolved data acquisition for perturbation-enhanced APXPS experiments.

作者信息

Redekop Evgeniy A, Johansson Niclas, Kokkonen Esko, Urpelainen Samuli, Lopes da Silva Felipe, Kaipio Mikko, Nieminen Heta-Elisa, Rehman Foqia, Miikkulainen Ville, Ritala Mikko, Olsbye Unni

机构信息

Department of Chemistry, Centre for Materials Science and Nanotechnology (SMN), University of Oslo, Oslo 0371, Norway.

MAX IV Laboratory, Lund University, SE-221 00 Lund, Sweden.

出版信息

Rev Sci Instrum. 2021 Apr 1;92(4):044101. doi: 10.1063/5.0039957.

Abstract

An experimental approach is described in which well-defined perturbations of the gas feed into an Ambient Pressure X-ray Photoelectron Spectroscopy (APXPS) cell are fully synchronized with the time-resolved x-ray photoelectron spectroscopy data acquisition. These experiments unlock new possibilities for investigating the properties of materials and chemical reactions mediated by their surfaces, such as those in heterogeneous catalysis, surface science, and coating/deposition applications. Implementation of this approach, which is termed perturbation-enhanced APXPS, at the SPECIES beamline of MAX IV Laboratory is discussed along with several experimental examples including individual pulses of N gas over a Au foil, a multi-pulse titration of oxygen vacancies in a pre-reduced TiO single crystal with O gas, and a sequence of alternating precursor pulses for atomic layer deposition of TiO on a silicon wafer substrate.

摘要

本文描述了一种实验方法,其中对进入常压X射线光电子能谱(APXPS)池的气体进料进行明确的扰动,使其与时间分辨的X射线光电子能谱数据采集完全同步。这些实验为研究材料特性及其表面介导的化学反应开辟了新的可能性,例如多相催化、表面科学以及涂层/沉积应用中的反应。本文讨论了这种被称为扰动增强APXPS的方法在MAX IV实验室的SPECIES光束线上的实施情况,并给出了几个实验示例,包括在金箔上单个氮气脉冲、用氧气对预还原的TiO单晶中的氧空位进行多脉冲滴定,以及在硅片衬底上进行TiO原子层沉积的一系列交替前驱体脉冲。

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