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首页> 外文期刊>ACS applied materials & interfaces >Pillararene-Based Aggregation-Induced-Emission-Active Supramolecular System for Simultaneous Detection and Removal of Mercury(II) in Water
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Pillararene-Based Aggregation-Induced-Emission-Active Supramolecular System for Simultaneous Detection and Removal of Mercury(II) in Water

机译:基于氨基的聚集诱导 - 发射活性超分子系统,用于同时检测和去除水中的汞(II)

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摘要

Supramolecular polymers are polymers based on monomeric units held together with directional and reversible noncovalent interactions. Compared with traditional polymers, they possess better processability and better recycling properties, owing to their reversible monomer-to-polymer transition. Herein, we report the construction of a new supramolecular system through self-assembly of a thymine-substituted copillar[S]arene 1 and a tetraphenylethylene (TPE) derivative 2 in the presence of Hg2+. Copillar[S]arene 1 can. coordinate with Hg2+ tightly through T-Hg2+-T pairings. On the other-hand, 1 can bind with guest molecule 2 through host guest interactions-between the pillararene catty and the nitrile moiety of 2. These joint interactions generte crisscrossed networks composed of 1, 2, and Hg2+, which eventually Wrap into spherical narioparticles. Due to the aggregation-induced emission (AIE) properties of 2, the formed supramolecular polymer exhibits strong fluorescence which renders convenient the detection of the Rg(2+)-containing nanoparticles and the subsequent removal procedure. Furthermore, the polymer precipitate can be readily isolated by simple treatment, and the pseudorotaxane 2 subset of 1 can be recycled and reused. Our study has demonstrated a practical strategy for the sensing and removal of heavy metal ions in water by the construction of supramolecular polymers,.
机译:超分子聚合物是基于与定向和可逆的非共价相互作用一起保持的单体单元的聚合物。与传统聚合物相比,由于其可逆的单体 - 聚合物转变,它们具有更好的可加工性和更好的回收性能。在此,我们通过在Hg2 +存在下通过胸腺嘧啶取代的共粒子[S]芳烃1和四苯基(TPE)衍生物2的自组装来报告新的超分子系统的构建。 Copillar [S]芳烃1可以。通过T-HG2 + -T配对紧密地与HG2 +坐标。另一方面,1可以通过宿主的相互作用与来自客户的相互作用与2.这些关节相互作用的腈部分相互作用与2.这些关节相互作用基因杆组成的网络组成,其中由1,2和Hg2 +组成,最终将其包裹成球形Nariocarticles 。由于2的聚集诱导的发射(AIE)性能为2,所形成的超分子聚合物表现出强烈的荧光,其使含RG(2 +)的纳米颗粒的检测和随后的除去方法方便。此外,通过简单的处理可以容易地分离聚合物沉淀物,并且伪横向2亚副盒1可以再循环并重复使用。我们的研究表明,通过施工超分子聚合物的施工,对水中重金属离子进行感测和去除重金属离子的实际策略。

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