基于己内酯的可生物降解聚合物用于选择性、灵敏性检测和去除水中的 Cu2+ 离子

IF 4.7 Q1 POLYMER SCIENCE
Narayan Das, Tapendu Samanta, Srishti Gautam, Karina Khan, Susmita Roy and Raja Shunmugam*, 
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引用次数: 0

摘要

尽管重金属和过渡金属起源于地壳,但人类接触重金属和人为活动造成的环境污染后果严重,其中包括工业生产和废物、采矿和冶炼作业以及农业和家庭使用金属。由于 Cu2+ 等重金属离子具有不可生物降解的特性,它们会在植物和食用动物体内迅速积累,最终进入人类的食物循环。因此,为了消除 Cu2+ 离子对环境和生物的有害影响,我们设计了一种传感器分子,它不仅能检测 Cu2+ 离子,还能选择性地从水介质中去除 Cu2+ 离子。为了检测 Cu2+ 离子,我们合成了一种单体(NCu)及其可生物降解的己内酰胺基聚合物(PNCu)。结果表明,NCu 和 PNCu 对 Cu2+ 离子都有较高的选择性,颜色由无色变为黄色,检测限值分别为 29 nM 和 0.3 μM。此外,通过开环聚合过程引入聚合物(PNCu)的疏水性,还能去除水溶液中的 Cu2+ 离子。由于疏水性增加,聚合物在溶液中加入 Cu2+ 离子后会产生黄色沉淀;因此,利用我们设计的聚合物及其检测能力可以去除金属离子。我们使用紫外-可见光谱和电离辐射 X 分析法检测了聚合物的去除效率,结果表明几乎所有的铜都被我们的聚合物去除。因此,据我们所知,这是第一种基于己内酯的可生物降解聚合物,可用于比色开启检测和分离水中的 Cu2+ 离子。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Caprolactone-Based Biodegradable Polymer for Selective, Sensitive Detection and Removal of Cu2+ Ions from Water

Caprolactone-Based Biodegradable Polymer for Selective, Sensitive Detection and Removal of Cu2+ Ions from Water

Caprolactone-Based Biodegradable Polymer for Selective, Sensitive Detection and Removal of Cu2+ Ions from Water

Even though heavy and transition metals originated in the earth’s crust, the significant human exposure and environmental pollution consequences of anthropogenic activities include industrial production and waste, mining and smelting operations, and agricultural and domestic usage of metals. Because of their nonbiodegradable nature, heavy metal ions such as Cu2+ accumulate very quickly in plants and edible animals, ultimately ending up in the human food cycle. Therefore, to nullify the detrimental effects of Cu2+ ions for the sake of the environment and living organisms, we are motivated to design a sensor molecule that can not only detect Cu2+ ions but also remove them selectively from the water medium. To detect the Cu2+ ions, we synthesized a monomer (NCu) and its biodegradable caprolactone-based polymer (PNCu). It was observed that both NCu and PNCu showed higher selectivity toward Cu2+ ions by changing the color from colorless to yellow, with a limit of detection value of 29 nM and 0.3 μM. Furthermore, removing the Cu2+ ions from the water solution was also accomplished by introducing the hydrophobicity of the polymer (PNCu) through the ring-opening polymerization process. Due to increased hydrophobicity, the polymer produced a yellow color precipitate upon adding Cu2+ ions to the solution; thus, removal of the metal ion is possible using our designed polymer and its detection ability. We checked the removal efficiency of our polymer by using UV–vis spectroscopy and EDX analysis, which indicated that almost all of the copper is removed by our polymer. Therefore, to our knowledge, this is the first biodegradable caprolactone-based polymer for colorimetric turn-on detection and separation of the Cu2+ ions from the water.

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