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Titania-supported molybdenum oxide combined with Au nanoparticles as a hydrogen-driven deoxydehydration catalyst of diol compounds

机译:二氧化钼氧化物氧化钼与Au纳米颗粒作为二醇化合物的氢驱动脱氧催化剂

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摘要

A heterogenous catalyst for the deoxydehydration (DODH) reaction was developed using less expensive Mo than Re as the active center. The combination of Mo with anatase-rich TiO2 and Au as the support and promoter for H2 activation, respectively, can selectively convert 1,4-anhydroerythritol to 2,5-dihydrofuran, which is a typical DODH model reaction, with H2 as a reducing agent. Loading of Au on TiO2 by the deposition–precipitation method gave the more active MoOx–Au/TiO2 catalyst (MoOx–dpAu/TiO2) than that obtained by the impregnation method (MoOx–impAu/TiO2), and the activity difference is derived from the smaller size of Au particles in MoOx–dpAu/TiO2 (3–5 nm) than that in MoOx–impAu/TiO2 (>25 nm). The MoOx–dpAu/TiO2 catalyst could be applied to the DODH reaction of linear alkyl vicinal diols and cis-1,2-cyclohexanediol. The characterization with XRD, STEM, H2-TPR, XAFS and XPS revealed that the MoIV oxide cluster species on the surface of anatase TiO2 particles are responsible for the DODH reaction.
机译:使用低于RE作为活性中心的MO较便宜的MO开发了用于脱氧脱氧反应(DODH)反应的异质催化剂。 MO与富氧化氢酶的TiO2和Au作为H2激活的支持和启动子的组合可以选择性地将1,4-羟基氨基硫醇转化为2,5-二氢呋喃,这是一种典型的DODH模型反应,用H2作为还原作为还原的DODH模型。代理人。通过沉积 - 原理方法在TIO2上加载AU给出了比浸渍方法(MOOX -IMPAU/TIO2)更活跃的MOOX – AU/TIO2催化剂(MOOX – DPAU/TIO2),并且活性差异得出MOOX – DPAU/TIO2(3-5 nm)中的Au颗粒的尺寸较小,而MOOX – IMPAU/TIO2(> 25 nm)的尺寸较小。 MOOX – DPAU/TIO2催化剂可以应用于线性烷基二醇和顺式1,2-甲氧烷二醇的DODH反应。用XRD,STEM,H2-TPR,XAFS和XPS的表征表明,剖腹酶TiO2颗粒表面上的MOIV氧化物簇物质是DODH反应的原因。

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