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High dimensionally structured W-V oxides as highly effective catalysts for selective oxidation of toluene

机译:高尺寸结构的W-V氧化物作为高效催化剂,用于选择性氧化甲苯

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High dimensionally structured W-V-O catalysts (HDS-WVO) were synthesized by hydrothermal method and catalyst structures were investigated by HAADF-STEM analysis. HDS-WVO were rod-shaped crystals and the cross-sections were constituted by W6O21 pentagonal units and MO6 octahedra (M = V, W), forming heptagonal and hexagonal channels. HDS-WVO catalysts showed excellent catalytic performance for selective oxidation of toluene to benzoic acid, and the activity and the selectivity to benzoic acid were superior to those of state-of-theart catalysts. After the ion exchange using Cs+, the catalytic activity over HDS-WVO was significantly decreased. Since HAADF-STEM analysis and N-2 adsorption revealed that Cs+ was located mainly at the heptagonal channel of HDS-WVO, it can be concluded that toluene oxidation takes place at the heptagonal channel site of HDS-WVO.
机译:采用水热法合成了高维结构的W-V-O催化剂(HDS-WVO),并用HAADF-STEM分析法研究了催化剂的结构。HDS-WVO为棒状晶体,截面由W6O21五边形单元和MO6八面体(M=V,W)组成,形成七边形和六角形通道。HDS-WVO催化剂对甲苯选择性氧化制苯甲酸具有良好的催化性能,其活性和选择性均优于现有催化剂。使用Cs+离子交换后,HDS-WVO的催化活性显著降低。由于HAADF-STEM分析和N-2吸附显示Cs+主要位于HDS-WVO的七通道,因此可以得出结论,甲苯氧化发生在HDS-WVO的七通道位置。

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