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Hydrogenation Properties of Nanostructured Tungsten Carbide Catalysts in a Continuous-Flow Reactor

机译:纳米结构碳化钨催化剂在连续流动反应器中的氢化性能

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摘要

Tungsten monocarbide (WC) obtained through a urea glass route showed a high activity and chemoselectivity for the continuous-flow reduction of a variety of nitro compounds under milder conditions than those reported previously. The favorable effect of the nanostructure was shown by comparison with other commercially available WC materials. Moreover, WC functioned as an efficient support for Ni nanoparticles. This expanded its range of applicability and led to a bimetallic Ni@WC composite characterized by a high activity for the hydrogenation of cardanol, a phenolic lipid obtained from cashew nut shells.
机译:通过尿素玻璃途径获得的钨多元化物(WC)显示出高活性和化学选择性,用于在比先前报道的那些升高的硝基化合物下的各种硝基化合物的连续流动减少。 通过与其他市售的WC材料进行比较,显示了纳米结构的有利效果。 此外,WC用作Ni纳米颗粒的有效支持。 这扩大了其适用范围,并导致了双金属Ni @ WC复合材料,其特征在于氯丹醇的氢化的高活性,从腰果壳中获得的酚醛脂质。

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