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Study of the structure of niobium oxide by X-ray absorption fine structure and surface science techniques

机译:X射线吸收精细结构和表面科学技术研究氧化铌的结构

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The structure of niobium oxides was investigated by using XAFS and surface science techniques. The origin of acidic property and catalysis of niobium oxide is discussed by these results. From the EXAFS analysis, the structure of highly acidic hydrated niobium oxide is different from those of T-Nb_2O_5 and K_8Nb_6O_(19), which has been previously demonstrated as the structure of hydrated niobium oxide, because Nb-Nb and Nb-O distances are significantly different from each other. There are at least two types of Nb-O bonds, a tetrahedral form and an octahedral form are existing for hydrated niobium oxide. The excess of negative charge is present for Nb-O bond by applying Tanabe's hypothesis to single metal oxide consisting of at least two metal-O forms with different coordination number. That seems to be the origin of the acidity of hydrated niobium oxide. The ordered niobium oxides thin film on Pt(111) and their defect face were prepared by using UHV surface analysis apparatus. The oxygen vacancies of niobium oxide on Pt(111) were created by Ar~+ ion bombardment. H_2O and CH_3OH exhibit associated adsorption on the ordered NbO_x and Nb_2O_5 surface and dissociative adsorption on the defect Nb_2O_5 surface at room temperature. On the ordered NbO_x and Nb_2O_5 surface, no evidence of ethene adsorption at 200 K is found by HREELS, although ethene adsorbs molecularly on the defect Nb_2O_5 surface with a π-complex formation. These resuits imply that oxygen vacancies of NbO_x surface play an important role on the adsorption of the molecules.
机译:利用XAFS和表面科学技术研究了铌氧化物的结构。这些结果讨论了酸性性质的起源和氧化铌的催化作用。从EXAFS分析来看,高酸性水合氧化铌的结构与T-Nb_2O_5和K_8Nb_6O_(19)不同,T-Nb_2O_5和K_8Nb_6O_(19)之前已被证明是水合氧化铌的结构,因为Nb-Nb和Nb-O的距离为彼此明显不同。 Nb-O键至少有两种类型,水合氧化铌存在四面体形式和八面体形式。通过将田边的假设应用到由至少两种具有不同配位数的金属-O形式组成的单一金属氧化物上,Nb-O键会产生过量的负电荷。这似乎是水合氧化铌酸度的来源。使用UHV表面分析仪制备了Pt(111)及其缺陷面上的有序氧化铌薄膜。 Ar〜+离子轰击在Pt(111)上形成了氧化铌的氧空位。在室温下,H_2O和CH_3OH在有序NbO_x和Nb_2O_5表面上表现出缔合吸附,在缺陷Nb_2O_5表面上表现出解离吸附。在HREELS上,在有序的NbO_x和Nb_2O_5表面上,没有发现乙烯在200 K时有吸附的迹象,尽管乙烯以π络合物的形式分子吸附在缺陷Nb_2O_5表面上。这些结果暗示NbO_x表面的氧空位在分子的吸附中起重要作用。

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