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Electron magnetic resonance as a tool to monitor charge separation and reactivity in photocatalytic materials

机译:电子磁共振作为监测光催化材料中电荷分离和反应性的工具

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The present paper describes the role of electron paramagnetic resonance (EPR) in the investigation of fundamental phenomena occurring in heterogeneous photocatalysis, namely, the light-induced charge carrier separation, the stabilization of the carriers and their consequent surface reactivity. We will describe the behavior of a series of photoactive oxides (TiO2, ZrO2, ZrTiO4 and ZnO) with different band gaps which exhibit electron and hole stabilization in all cases. The EPR technique reveals the nature of the different stabilization sites (e.g. Ti4+, Zr4+, Zn2+) for the electrons and monitors the hole trapping in terms of the formation of O center dot- centers. The electron transfer reactivity at the surface of the photogenerated carriers is then monitored using specific scavengers admitted in the gas phase over the solid, specifically, molecular oxygen and molecular hydrogen for electron scavenging and hole scavenging, respectively. The method illustrated herein is particularly useful as a preliminary means of checking the features of novel photocatalytic materials.
机译:本文描述了电子顺磁共振(EPR)在异构光催化分解中发生的基本现象的研究中的作用,即光诱导的电荷载体分离,载体稳定性及其表面反应性。我们将描述一系列光活性氧化物(TiO2,ZrO2,ZrTiO4和ZnO)的行为,其不同的带间隙在所有情况下表现出电子和空穴稳定化。 EPR技术揭示了电子的不同稳定部位(例如Ti4 +,Zr4 +,Zn2 +)的性质,并在形成O中心点的形成方面监测空穴俘获。然后使用在固体,具体的,分子氧和分子氢中进入气相中的特定清除剂,分别使用固体,特异性,分子氧和孔清除的特定清除剂来监测光生载体表面的电子转移反应性。本文所示的方法特别可用作检查新型光催化材料的特征的初步手段。

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