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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Acid sites and oxidation center in molybdena supported on tin oxide as studied by solid-state NMR spectroscopy and theoretical calculation
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Acid sites and oxidation center in molybdena supported on tin oxide as studied by solid-state NMR spectroscopy and theoretical calculation

机译:固相核磁共振光谱和理论计算研究氧化锡负载钼上的酸位和氧化中心

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Solid-state NMR spectroscopy and density functional theory (DFT) calculations were employed to study the structure and properties, especially the solid acidity, of molybdenum oxide supported on tin oxide. As demonstrated by solid-state NMR experiments, Mo species are mainly dispersed on the surface of SnO2 support rather than significantly dissolved into the SnO2 structure and Bronsted as well as Lewis acid sites are present on the MoO3/SnO2 catalyst. Acid strength of the supported metal oxide is stronger than those of zeolites, e. g., HY and HZSM-5, though the concentration of acid sites is relatively lower. The DFT calculated 13 C chemical shift for acetone adsorbed on MoO3/SnO2 is in good agreement with the experimental value, which confirms our proposed structure of -Mo-(OH)-Sn- for the Bronsted acid site. Reducibility of the supported metal oxide is also demonstrated by solid-state NMR experiments and an active oxidation center of this catalyst is proposed as well.
机译:固态NMR光谱和密度泛函理论(DFT)计算被用来研究氧化锡上负载的氧化钼的结构和性质,尤其是固体酸度。如固态NMR实验所示,Mo物种主要分散在SnO2载体的表面上,而不是显着溶解在SnO2结构中,并且MoO3 / SnO2催化剂上存在布朗斯台德位点和路易斯酸位。负载的金属氧化物的酸强度比沸石例如沸石的酸强度强。例如,HY和HZSM-5,尽管酸位的浓度相对较低。 DFT计算得出的MoO3 / SnO2上吸附的丙酮的13 C化学位移与实验值非常吻合,这证实了我们为布朗斯台德酸性位点提议的-Mo-(OH)-Sn-结构。还通过固态NMR实验证明了负载的金属氧化物的还原性,并且还提出了该催化剂的活性氧化中心。

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