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Applying low-molecular weight supramolecular gelators in an environmental setting – self-assembled gels as smart materials for pollutant removal

机译:在环境条件下应用低分子量超分子凝胶剂 - 自组装凝胶作为污染物去除的智能材料

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摘要

This review explores supramolecular gels as materials for environmental remediation. These soft materials are formed by self-assembling low-molecular-weight building blocks, which can be programmed with molecular-scale information by simple organic synthesis. The resulting gels often have nanoscale ‘solid-like’ networks which are sample-spanning within a ‘liquid-like’ solvent phase. There is intimate contact between the solvent and the gel nanostructure, which has a very high effective surface area as a result of its dimensions. As such, these materials have the ability to bring a solid-like phase into contact with liquids in an environmental setting. Such materials can therefore remediate unwanted pollutants from the environment including: immobilisation of oil spills, removal of dyes, extraction of heavy metals or toxic anions, and the detection or removal of chemical weapons. Controlling the interactions between the gel nanofibres and pollutants can lead to selective uptake and extraction. Furthermore, if suitably designed, such materials can be recyclable and environmentally benign, while the responsive and tunable nature of the self-assembled network offers significant advantages over other materials solutions to problems caused by pollution in an environmental setting.
机译:这篇综述探讨了超分子凝胶作为环境修复的材料。这些柔软的材料是通过自组装的低分子量结构单元形成的,可以通过简单的有机合成方法用分子级信息进行编程。所得的凝胶通常具有纳米级的“固体状”网络,这些网络跨在“液体状”溶剂相中。溶剂和凝胶纳米结构之间存在紧密接触,由于其尺寸大,其具有非常高的有效表面积。这样,这些材料具有在环境条件下使固相与液体接触的能力。因此,此类材料可以补救环境中的有害污染物,包括:固定溢油,去除染料,提取重金属或有毒阴离子以及检测或去除化学武器。控制凝胶纳米纤维和污染物之间的相互作用可以导致选择性的吸收和提取。此外,如果设计得当,这样的材料可以是可回收的并且对环境无害,而自组装网络的响应性和可调性相对于其他材料解决方案提供了明显的优势,可解决环境设置中污染引起的问题。

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