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The impact of steam on the electronic structure of the selective propane oxidation catalyst MoVTeNb oxide (orthorhombic M1 phase)

机译:蒸汽对选择性丙烷氧化催化剂MoVTeNb氧化物(斜方M1相)的电子结构的影响

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摘要

The selective propane oxidation catalyst MoVTeNb oxide M1 was investigated by microwave conductivity, synchrotron X-ray photoelectron, soft X-ray absorption and resonant photoelectron spectroscopy under reaction conditions to identify the influence of steam on the electronic bulk and surface properties. Steam significantly increases both the conversion of propane and the selectivity to the target product acrylic acid. The increased catalytic performance comes along with a decreased conductivity, a modification of the surface chemical and electronic structure with an enrichment of covalently bonded V5+ species to the extent of Mo6+, a decreased work function and hence polarity of the surface and a modified valence band structure. The higher degree of covalency in metal oxide bonds affects the mobility of the free charge carriers, and hence explains the decrease of the conductivity with steam. Furthermore we could prove that a subsurface space charge region depleted in electrons and thus an upward bending of the electronic band structure are induced by the reaction mixture, which is however not dependent on the steam content.
机译:在反应条件下,通过微波电导率,同步加速器X射线光电子,软X射线吸收和共振光电子能谱研究了选择性丙烷氧化催化剂MoVTeNb氧化物M1,以确定蒸汽对电子体积和表面性质的影响。蒸汽显着提高了丙烷的转化率和对目标产物丙烯酸的选择性。催化性能的提高伴随着电导率的降低,表面化学和电子结构的改性以及共价键合的V5 +物种的富集到Mo6 +的程度,功函数的降低以及表面极性的降低以及价带结构的改变。金属氧化物键中较高的共价度影响自由电荷载流子的迁移率,因此可以解释蒸汽的电导率降低。此外,我们可以证明,反应混合物引起了电子中的地下空间电荷区的耗尽,从而导致电子能带结构的向上弯曲,但这与蒸汽含量无关。

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