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首页> 外文期刊>Topics in Catalysis >Influence of the Metal Oxide Substrate Structure on Vanadium Oxide Monomer Formation
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Influence of the Metal Oxide Substrate Structure on Vanadium Oxide Monomer Formation

机译:金属氧化物基质结构对钒氧化物单体形成的影响

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Vanadium oxide (VO_x) molecular species supported on high surface area oxide supports are active catalysts for oxidative transformations of organic molecules. Since the reactivity of VO_x species depends on their molecular structure, the understanding and control of factors that determine their structure would be useful in surface molecular catalyst design. Reactive adsorption of vanadyl triisopropoxide (VOTP) to form monomeric VO_x species on amorphous Al2O3 and SrTiO3 (001) surfaces has been studied by X-ray photoelectron spectroscopy (XPS). Quantitative comparison of C(1s) and V(2p_(3/2)) peak areas has been used to determine the number of isopropoxide ligands that are replaced by V-O surface bonds. On average, three V-O surface bonds are formed during adsorption on an amorphous Al2O3 surface, as expected in the formation of a tridentate, V04 structure, typically assigned to monomeric, surface VO_x species. On the SrTiO3 (001) surface, the number of V-O surface bonds depends on the oxygen density prior to reaction with VOTP. For adsorption on the SrTiO3 surface cleaned and oxygen-annealed in ultrahigh vacuum, the number of V-O surface bonds is ca. 2. When the SrTiO3 surface has been Ar-ion sputtered prior to VOTP adsorption, the number of V-O bonds is ca. 1. This study demonstrates that the atomic structure of the support can strongly influence the molecular nature of surface VO_x species.
机译:负载在高表面积氧化物载体上的氧化钒(VO_x)分子物质是用于有机分子氧化转化的活性催化剂。由于VO_x物种的反应性取决于它们的分子结构,因此了解和控制决定其结构的因素将有助于表面分子催化剂的设计。 X射线光电子能谱(XPS)研究了在无定形Al2O3和SrTiO3(001)表面上反应性吸附钒氧三异丙醇(VOTP)以形成单体VO_x物质。 C(1s)和V(2p_(3/2))峰面积的定量比较已用于确定被V-O表面键取代的异丙醇配体的数量。平均而言,在吸附过程中在无定形Al2O3表面上形成了三个V-O表面键,这是三齿V04结构形成的预期结果,通常被分配给单体表面VO_x物种。在SrTiO3(001)表面上,V-O表面键的数量取决于与VOTP反应之前的氧密度。为了在超高真空下经过清洁和氧退火的SrTiO3表面上吸附,V-O表面键的数目约为1。 2.如果在VOTP吸附之前先对SrTiO3表面进行了Ar离子溅射,则V-O键的数量约为1。 1.这项研究表明载体的原子结构可以强烈影响表面VO_x种类的分子性质。

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