Shetty Suchetha, Baig Noorullah, Wahed Sk Abdul, Hassan Atikur, Das Neeladri, Alameddine Bassam
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.
Polymers (Basel). 2023 Oct 19;15(20):4153. doi: 10.3390/polym15204153.
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.
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。