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Highly efficient removal of organic pollutants by ultrahigh-surface-area-ethynylbenzene-based conjugated microporous polymers via adsorption-photocatalysis synergy

机译:高效去除有机污染物ultrahigh-surface-area-ethynylbenzene-based共轭微孔聚合物通过adsorption-photocatalysis协同作用

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摘要

Two types of conjugated microporous polymer photocatalysts inherently possessing a high surface area (up to 1265 m(2) g(-1)) have been synthesized via Sonogashira-Hagihara cross-coupling polycondensation and applied for the removal of different organic contaminants (rhodamine B, phenol and tetracycline) via adsorption-photocatalysis synergy. The study on the photocatalytic performance and mechanism demonstrated that the specific surface areas and the backbone structures of the polymers had a great influence on the photocatalytic performances. A higher specific surface area and an increased adsorption efficiency for pollutants contributed to the enhanced photocatalytic activity. The optical and electrochemical characterization studies revealed that compared with its counterpart with a network structure, the linear polymer (based on 1,4-diethynylbenzene) showed a narrower band gap and a higher photogenerated charge separation efficiency due to its better extended conjugated system, which boosted its photocatalytic activity. The above features made the polymers exhibit superior adsorption-photocatalytic activity compared with the reported photocatalysts. This work highlights the potential of developing porous organic semiconductors as highly efficient photocatalysts for environmental remediation.
机译:两种类型的共轭微孔聚合物论文本身具有高表面积(最高可达1265 m (2) g (1))交叉耦合缩聚和申请不同的有机污染物的去除(罗丹明B、苯酚和四环素)通过adsorption-photocatalysis协同作用。光催化性能和机制证明了特定的表面区域骨架结构的聚合物影响光催化表演。增加对污染物的吸附效率导致了增强光催化活动。特性研究表明,相比与其对应的网络结构,线性聚合物(基于1, 4-diethynylbenzene)显示狭窄的带隙和更高photogenerated电荷分离由于其效率更好的延长共轭系统,提升了其光催化活动。表现出优越adsorption-photocatalytic活动与报道论文的。多孔有机发展的潜力半导体作为高效的催化剂环境修复。

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