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首页> 外文期刊>Journal of Applied Polymer Science >Catalytic oxidation of thioanisole using oxovanadium(IV)-functionalized electrospun polybenzimidazole nanofibers
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Catalytic oxidation of thioanisole using oxovanadium(IV)-functionalized electrospun polybenzimidazole nanofibers

机译:氧钒(IV)-官能化的电纺聚苯并咪唑纳米纤维催化氧化硫代苯甲醚

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摘要

Polybenzimidazole fibers, with an average diameter of 262 nm, were produced by the process of electrospinning. These fibers were used as a solid support material for the immobilization of oxovanadium(IV) which was achieved via a reaction with vanadyl sulfate. The oxovanadium(IV)-functionalized nanofibers were used as heterogeneous catalysts for the oxidation of thioanisole under both batch and pseudo-continuous flow conditions with great success. Under batch conditions near quantitative oxidation of thioanisole was achieved in under 90 min, even after four successive catalytic reactions. Under continuous conditions, excellent conversion of thioanisole was maintained throughout the period studied at flow rates of up to 2 mLh-1. This study, therefore, proposes that electrospun polybenzimidazole nanofibers, with their small diameters, impressive chemical and thermal stability, as well as coordinating benzimidazole group, may be a desirable support material for immobilization of homogeneous catalysts.
机译:通过电纺丝工艺生产平均直径为262 nm的聚苯并咪唑纤维。这些纤维用作用于固定氧钒(IV)的固体载体材料,这是通过与硫酸氧钒反应而实现的。将氧钒(IV)官能化的纳米纤维用作多相催化剂,用于分批和拟连续流动条件下的硫代苯甲醚氧化。在间歇条件下,即使经过四个连续的催化反应,在90分钟内仍可实现接近定量的硫代苯甲醚氧化反应。在连续条件下,在整个研究过程中,以高达2 mLh-1的流速保持了优异的硫代茴香醚转化率。因此,这项研究表明,电纺聚苯并咪唑纳米纤维的直径小,化学和热稳定性令人印象深刻,并且配位了苯并咪唑基团,可能是固定均相催化剂的理想载体材料。

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