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首页> 外文期刊>Catalysis science & technology >W2C nanorods with various amounts of vacancy defects: determination of catalytic active sites in the hydrodeoxygenation of benzofuran
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W2C nanorods with various amounts of vacancy defects: determination of catalytic active sites in the hydrodeoxygenation of benzofuran

机译:W2C纳米棒与不同数量的空缺缺陷:催化活性位点的确定hydrodeoxygenation的香豆酮

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摘要

Transition metal carbides have been of great interest because of their noble-metal-like properties. Because of the complexity of their structures, it is crucial to design an experiment that can eliminate the influence of supports, surface carbon contamination and particle sizes when finding the exact catalytic active sites. In this work, phase-pure W2C nanorods (lengths of 2-4 mu m and diameters of 100-600 nm) with different amounts of crystal defects were prepared by the pyrolysis of metatungstate and melamine hybrid nanorods with nanoscale periodic structure synthesized in the aqueous phase. The nanoscale alternating structure between tungsten oxide and melamine effectively promotes the reduction of tungsten oxide and the formation of tungsten carbide, avoiding the deposition of carbon on the surface. At the same time, vacancy defects are generated due to the deficiency of carbon. High pyrolysis temperature (900 degrees C), prolonged pyrolysis time (4 h), introduction of hydrogen and the proper increase of the temperature ramping rate (5 degrees C min-1) are favorable to the formation of vacancy defects. The activities of different catalysts were evaluated by the hydrodeoxygenation of benzofuran at 320 to 350 degrees C. The results show that the vacancy defect sites in W2C are the key to the high reactivity of W2C. The vacancy defect sites have favorable properties for the cleavage of carbon-oxygen bonds. The Caromatic-O bond is cleaved in the case of unsaturated aromatic rings, thereby reducing the consumption of hydrogen. In addition, it is found that the apparent activation energy of each chemical bond is linear-like and positively related to its bond dissociation energy.
机译:过渡金属碳化物的伟大因为他们的noble-metal-like感兴趣属性。设计一个实验结构,这是至关重要的可以消除支持的影响,表面碳污染和粒子大小当发现确切的催化活性位点。这项工作,phase-pure W2C纳米棒的长度2 - 4μm和直径100 - 600 nm)不同数量的晶体缺陷由metatungstate和热解三聚氰胺混合纳米棒和纳米尺度的周期结构在水相合成。纳米钨之间交替结构氧化物和三聚氰胺的有效促进减少钨氧化物的形成碳化钨,避免的沉积碳表面上。缺陷是由于缺乏生成的碳。C),长时间的热解时间(4小时),介绍的氢和适当的增加温度增加率(5摄氏度最低为1)有利于空位缺陷的形成。不同催化剂的活动评估的hydrodeoxygenation香豆酮在320到350度c。结果表明W2C的空位缺陷网站的关键W2C的高反应活性。乳沟网站具有良好的性质的碳氧键。裂解的不饱和芳香环,从而减少消费氢。每个化学键的表观活化能linear-like和正相关的债券离解能。

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