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Hyper-reticulated calixarene polymers: a new example of entirely synthetic nanosponge materials

机译:网状杯芳烃聚合物:全合成纳米海绵材料的新实例

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摘要

New calixarene-based nanosponges (CaNSs), i.e., hyper-reticulated polymers constituted by calixarene monomer units joined by means of bis(1,2,3-trialzolyl)alkyl linkers, were synthesized, characterized and subjected to preliminary tests to assess their supramolecular absorption abilities towards a set of suitable organic guests, selected as pollutant models. The synthesis was accomplished by means of a CuAAC reaction between a tetrakis(propargyloxy)calix[4]arene and an alkyl diazide. The formation of the polymeric network was assessed by means of FTIR and 13C{1H} CP-MAS solid-state NMR techniques, whereas morphological characterization was provided by SEM microghaphy. The materials were proved to possess pH-dependent sequestration abilities, due to the presence of the weakly basic triazole linkers. Sequestration efficiency indeed depends on the effective occurrence of both electrostatic and hydrophobic interactions between the guest and the polymer lattice. Thus, our CaNS nanosponges can be considered as a new class of purely synthetic smart absorbent materials.
机译:合成了新的基于杯芳烃的纳米海绵(CaNSs),即由杯芳烃单体单元通过双(1,2,3-三芳基甲苯基)烷基连接的超网状聚合物,表征并进行了初步测试以评估其超分子对一组合适的有机客体的吸收能力,被选作污染物模型。借助于四(炔丙基氧基)杯[4]芳烃与烷基二叠氮化物之间的CuAAC反应完成合成。聚合物网络的形成是通过FTIR和 13 C { 1 H} CP-MAS固态NMR技术进行评估的,而形态学表征则是通过SEM微图像技术进行的。 。由于弱碱性三唑连接基的存在,已证明该材料具有pH依赖性的螯合能力。螯合效率确实取决于客体和聚合物晶格之间静电和疏水相互作用的有效发生。因此,我们的CaNS纳米海绵可以被视为一类新型的纯合成智能吸收材料。

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