首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Acidity of mesoporous MoOx/ZrO2 and WOx/ZrO2 materials: A combined solid-state NMR and theoretical calculation study
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Acidity of mesoporous MoOx/ZrO2 and WOx/ZrO2 materials: A combined solid-state NMR and theoretical calculation study

机译:介孔MoOx / ZrO2和WOx / ZrO2材料的酸度:固态NMR和理论计算研究的组合

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The acidity of mesoporous MoOx/ZrO2 and WOx/ZrO2 materials was studied in detail by multinuclear solid-state NMR techniques as well as DFT quantum chemical calculations. The H-1 MAS NMR experiments clearly revealed the presence of two different types of strong Brlnsted acid sites on both MoOx/ZrO2 and WOx/ZrO2 mesoporous materials, which were able to prontonate adsorbed pyrine-d(5) (resulting in H-1 NMR signals at chemical shifts in the range 16-19 ppm) as well as adsorbed trimethylphosphine ( giving rise to P-31 NMR signal at ca. 0 ppm). The C-13 NMR of adsorbed 2-C-13-acetone indicated that the average Brlnsted acid strength of the two mesoporous materials was stronger than that of zeolite HZSM-5 but still weaker than that of 100% H2SO4, which was in good agreement with theoretical predictions. The quantum chemical calculations revealed the detailed structures of the two distinct types of Brlnsted acid sites formed on the mesoporous MoOx/ZrO2 and WOx/ZrO2. The existence of both monomer and oligomer Mo ( or W) species containing a Mo-OH-Zr ( or W-OH-Zr) bridging OH group was confirmed with the former having an acid strength close to zeolite HZSM-5, with the latter having an acid strength similar to sulfated zirconia. On the basis of our NMR experimental and theoretical calculation results, a possible mechanism was proposed for the formation of acid sites on these mesoporous materials.
机译:通过多核固态NMR技术以及DFT量子化学计算,详细研究了介孔MoOx / ZrO2和WOx / ZrO2材料的酸度。 H-1 MAS NMR实验清楚地表明,在MoOx / ZrO2和WOx / ZrO2介孔材料上均存在两种不同类型的强布朗斯特酸位点,它们能够使吸附的吡啶-d(5)发生质子化作用(导致H-1化学位移范围为16-19 ppm的NMR信号以及吸附的三甲基膦(在大约0 ppm处产生P-31 NMR信号)。吸附的2-C-13-丙酮的C-13 NMR结果表明,两种介孔材料的平均布朗斯台德酸强度比HZSM-5沸石强,但仍比100%H2SO4弱。有理论上的预测。量子化学计算揭示了在介孔MoOx / ZrO2和WOx / ZrO2上形成的两种不同类型的布朗斯台德酸位的详细结构。证实存在具有桥接OH基的Mo-OH-Zr(或W-OH-Zr)的单体和低聚物Mo(或W)物种,其前者具有接近于沸石HZSM-5的酸强度,后者具有具有与硫酸化氧化锆相似的酸强度。根据我们的NMR实验和理论计算结果,提出了在这些介孔材料上形成酸位的可能机理。

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