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首页> 外文期刊>ChemCatChem >Probe-Molecule-Assisted NMR Spectroscopy: A Comparison with Photoluminescence and Electron Paramagnetic Resonance Spectroscopy as a Characterization Tool in Facet-Specific Photocatalysis
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Probe-Molecule-Assisted NMR Spectroscopy: A Comparison with Photoluminescence and Electron Paramagnetic Resonance Spectroscopy as a Characterization Tool in Facet-Specific Photocatalysis

机译:探针 - 分子辅助NMR光谱:与光致发光和电子顺磁共振光谱的比较,作为小型光电催化在刻录物中的表征工具

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摘要

Photoluminescence (PL) and EPR spectroscopy are the two most commonly used techniques to evaluate surface oxygen vacancies (V-Osurface) on photoactive transition metal oxides. However, these techniques have shortcomings in the characterization of facet-dependent catalysis. Here, we used the chemical adsorption of a P-31-containing probe molecule to obtain the distribution/concentration of V-Osurface as well as other surface features (hydroxyl groups) of ZnO by using P-31 magic-angle spinning NMR spectroscopy. This facet-specific technique not only makes cross-literature comparison feasible but also provides more comprehensive information to lead to a further understanding of the photocatalytic mechanism.
机译:光致发光(PL)和EPR光谱是评估光活性过渡金属氧化物上的表面氧空位(V-OSURFACE)的两个最常用的技术。 然而,这些技术具有在依赖依赖性催化的表征中的缺点。 这里,我们利用P-31魔角纺丝NMR光谱获得含P-31含探针分子的化学吸附,得到V-Osurface的分布/浓度和ZnO的其他表面特征(羟基)。 这种方面的特定技术不仅使跨文献比较可行,而且还提供了更全面的信息,以进一步了解光催化机制。

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