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费米能级钉扎气敏机制的直接显微镜证据:负载铂的WO的案例

Direct Microscopic Proof of the Fermi Level Pinning Gas-Sensing Mechanism: The Case of Platinum-Loaded WO.

作者信息

Staerz Anna, Bahri Mounib, Geyik Ugur, Brinkmann Helena, Weimar Udo, Ersen Ovidiu, Barsan Nicolae

机构信息

Institute of Physical and Theoretical Chemistry (IPTC) , University of Tuebingen , Auf der Morgenstelle 15 , D-72076 Tuebingen , Germany.

Institut de Physique et Chimie des Matériaux de Strasbourg (IPCMS) , UMR 7504 CNRS-Université de Strasbourg, 23 rue du Lœss , F-67034 Strasbourg cedex 2, France.

出版信息

J Phys Chem Lett. 2020 Jan 2;11(1):166-171. doi: 10.1021/acs.jpclett.9b03114. Epub 2019 Dec 18.

Abstract

It is widely known that the sensing characteristics of metal oxides are drastically changed through noble metal oxide surface additives. Using operando infrared spectroscopy it was identified that the Fermi level pinning mechanism dominates the sensor response of platinum-loaded WO. Spectroscopy, however, provides information about the sample only on average. Traditional microscopy offers structural information but is typically done in vacuum and on unheated sensors, very different than the operation conditions of metal oxide gas sensors. Here, state-of-the-art in situ scanning transmission electron microscopy offers spatially resolved information on heated samples at atmospheric pressure in varying gas atmospheres. As a result it was possible to directly couple microscopically observed structural changes in the surface noble metal nanoclusters with IR spectra and sensor responses. On the basis of the findings, the dominant Fermi level pinning mechanism could be validated. The presented work demonstrates the benefits of coupling in situ microscopy with operando spectroscopy in order to elucidate the sensing mechanism of metal oxides.

摘要

众所周知,通过贵金属氧化物表面添加剂,金属氧化物的传感特性会发生显著变化。利用原位红外光谱法已确定,费米能级钉扎机制主导着负载铂的WO的传感器响应。然而,光谱法仅能提供关于样品的平均信息。传统显微镜能提供结构信息,但通常是在真空环境下对未加热的传感器进行操作,这与金属氧化物气体传感器的工作条件大不相同。在此,先进的原位扫描透射电子显微镜能够在大气压力下、不同气体氛围中,对加热样品提供空间分辨信息。结果,得以将表面贵金属纳米团簇中显微镜观察到的结构变化与红外光谱及传感器响应直接关联起来。基于这些发现,占主导地位的费米能级钉扎机制得以验证。所展示的工作证明了将原位显微镜与原位光谱相结合以阐明金属氧化物传感机制的益处。

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