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Analysis of silica-supported vanadia by X-ray absorption spectroscopy: Combined theoretical and experimental studies

机译:X射线吸收光谱法分析二氧化硅负载的钒的理论和实验研究相结合

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In this study we combine density-functional theory (DFT) calculations on oxygen core excitations in vanadia-silica model clusters with in situ X-ray absorption fine structure (NEXAFS) measurements near the oxygen K-edge of vanadia model catalysts supported by silica SBA-15 in order to analyze structural details of the vanadia species. The silica support is found to contribute to the NEXAFS spectrum in an energy range well above that of the vanadium oxide units allowing a clear separation between the corresponding contributions. Further, differently coordinated oxygen which is characteristic for particular vanadia species, monomeric or non-monomeric, can be identified in the theoretical spectra consistent with the oxygen K-edge NEXAFS measurements. The comparison of the theoretical and experimental NEXAFS spectra provides clear evidence that under in situ conditions different molecular vanadia species, in particular non-monomeric V_xO_y, exist at the catalyst surface and the exclusive presence of monomeric vanadia groups can be ruled out. The present analysis goes beyond earlier work applying vibrational spectroscopy to the present systems where, as a result of extended vibrational coupling, a separation between vanadia, silica, and interface contributions was less successful.
机译:在这项研究中,我们结合了对钒-二氧化硅模型簇中氧核激发的密度泛函理论(DFT)计算与在二氧化硅SBA支撑的钒模型催化剂的氧K边缘附近进行的原位X射线吸收精细结构(NEXAFS)测量-15为了分析钒物种的结构细节。发现二氧化硅载体在远高于氧化钒单元的能量范围内的能量范围内对NEXAFS谱有贡献,从而允许在相应的贡献之间清楚地分离。此外,可以在与氧K-边缘NEXAFS测量结果一致的理论光谱中鉴定出对于特定钒物种(单体或非单体)而言特征不同的配位氧。理论和实验NEXAFS光谱的比较提供了明确的证据,即在原位条件下,催化剂表面存在不同的分子钒物种,尤其是非单体的V_xO_y,并且可以排除单体钒基团的排他性存在。本分析超出了将振动光谱学应用于本系统的早期工作,在本系统中,由于扩展的振动耦合,钒,二氧化硅和界面成分之间的分离不太成功。

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