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首页> 外文期刊>Separation and Purification Technology >Task-specific synthesis of cost-effective electron-rich thiophene-based hypercrosslinked polymer with perylene for efficient iodine capture
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Task-specific synthesis of cost-effective electron-rich thiophene-based hypercrosslinked polymer with perylene for efficient iodine capture

机译:特异性合成经济高效的富含电子富含噻吩的高速链接聚合物,具有高效碘捕获

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摘要

An electron-rich thiophene-based hypercrosslinked polymer knitting with perylene moieties was obtained in the presence of anhydrous ferric chloride. The resultant polymer possessed a specific surface area of 612.83 m(2) g(-1) and high thermal stability. Taking advantage of electron-rich structure and microporosity as well as high surface area, the material showed high iodine vapor uptake capacity up to 360 wt%. The performance was 13-fold higher than that of the representative porous silver-based zeolite mordenite and was the highest value among the reported thiophene-based porous organic polymers. X-ray photoelectron spectrometer and Raman analysis results demonstrated that the form of captured iodine was polyiodide anions. We envisage practical application of such promising and cost-effective materials in the field of iodine capture.
机译:在无水氯化物存在下,获得了一种具有Perylene部分的基于富含电子的噻吩的高通链聚合物编织。 所得聚合物具有612.83m(2)g(-1)和高热稳定性的比表面积。 利用富含电子的结构和微孔度以及高表面积,该材料显示出高达360wt%的高碘蒸汽吸收能力。 该性能高于代表多孔银基沸石丝光沸石的性能为13倍,并且是所报道的噻吩基多孔有机聚合物中的最高值。 X射线光电子光谱仪和拉曼分析结果表明,捕获碘的形式是聚碘阴离子。 我们设想在碘捕获领域进行如此有前途和成本效益的材料的实际应用。

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