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含双环戊并芘重复单元和各种噻吩衍生物的共轭共聚物对碘和镍离子的吸附作用

Iodine and Nickel Ions Adsorption by Conjugated Copolymers Bearing Repeating Units of Dicyclopentapyrenyl and Various Thiophene Derivatives.

作者信息

Shetty Suchetha, Baig Noorullah, Wahed Sk Abdul, Hassan Atikur, Das Neeladri, Alameddine Bassam

机构信息

Department of Mathematics and Natural Sciences, Gulf University for Science and Technology, Mubarak Al-Abdullah 32093, Kuwait.

Functional Materials Group, Gulf University for Science and Technology, Mubarak Al-Abdullah 32093, Kuwait.

出版信息

Polymers (Basel). 2023 Oct 19;15(20):4153. doi: 10.3390/polym15204153.

Abstract

The synthesis of three conjugated copolymers TPP1-3 was carried out using a palladium-catalyzed [3+2] cycloaddition polymerization of 1,6-dibromopyrene with various dialkynyl thiophene derivatives 3a-c. The target copolymers were obtained in excellent yields and high purity, as confirmed by instrumental analyses. TPP1-3 were found to divulge a conspicuous iodine adsorption capacity up to 3900 mg g, whereas the adsorption mechanism studies revealed a pseudo-second-order kinetic model. Furthermore, recyclability tests of TPP3, the copolymer which revealed the maximum iodine uptake, disclosed its efficient regeneration even after numerous adsorption-desorption cycles. Interestingly, the target copolymers proved promising nickel ions capture efficiencies from water with a maximum equilibrium adsorption capacity (q) of 48.5 mg g.

摘要

通过钯催化的1,6 - 二溴芘与各种二炔基噻吩衍生物3a - c的[3 + 2]环加成聚合反应合成了三种共轭共聚物TPP1 - 3。经仪器分析证实,目标共聚物的产率极高且纯度很高。发现TPP1 - 3具有高达3900 mg g的显著碘吸附容量,而吸附机理研究揭示了一个准二级动力学模型。此外,对显示出最大碘吸收量的共聚物TPP3进行的可回收性测试表明,即使经过多次吸附 - 解吸循环,它仍能有效再生。有趣的是,目标共聚物在从水中捕获镍离子方面表现出良好的效率,最大平衡吸附容量(q)为48.5 mg g。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4d67/10611155/1f7da203a7dd/polymers-15-04153-sch001.jpg

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