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Iron detection and remediation with a functionalized porous polymer applied to environmental water samples

机译:使用功能性多孔聚合物对环境水样品进行铁检测和修复

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摘要

Iron is one of the most abundant elements in the environment and in the human body. As an essential nutrient, iron homeostasis is tightly regulated, and iron dysregulation is implicated in numerous pathologies, including neuro-degenerative diseases, atherosclerosis, and diabetes. Endogenous iron pool concentrations are directly linked to iron ion uptake from environmental sources such as drinking water, providing motivation for developing new technologies for assessing iron(ii) and iron(iii) levels in water. However, conventional methods for measuring aqueous iron pools remain laborious and costly and often require sophisticated equipment and/or additional processing steps to remove the iron ions from the original environmental source. We now report a simplified and accurate chemical platform for capturing and quantifying the iron present in aqueous samples through use of a post-synthetically modified porous aromatic framework (PAF). The ether/thioether-functionalized network polymer, PAF-1–ET, exhibits high selectivity for the uptake of iron(ii) and iron(iii) over other physiologically and environmentally relevant metal ions. Mössbauer spectroscopy, XANES, and EXAFS measurements provide evidence to support iron(iii) coordination to oxygen-based ligands within the material. The polymer is further successfully employed to adsorb and remove iron ions from groundwater, including field sources in West Bengal, India. Combined with an 8-hydroxyquinoline colorimetric indicator, PAF-1–ET enables the simple and direct determination of the iron(ii) and iron(iii) ion concentrations in these samples, providing a starting point for the design and use of molecularly-functionalized porous materials for potential dual detection and remediation applications.
机译:铁是环境和人体中最丰富的元素之一。铁稳态作为一种重要的营养素,受到严格调节,铁失调与多种疾病有关,包括神经退行性疾病,动脉粥样硬化和糖尿病。内源性铁矿藏的浓度直接与饮用水等环境来源中铁离子的吸收有关,为开发评估水中铁(ii)和铁(iii)水平的新技术提供了动力。然而,用于测量含水铁池的常规方法仍然费力且昂贵,并且通常需要复杂的设备和/或额外的处理步骤以从原始环境源去除铁离子。现在,我们报告了一种简化而精确的化学平台,该平台可通过使用合成后修饰的多孔芳香族骨架(PAF)来捕获和量化水溶液样品中存在的铁。醚/硫醚官能化的网络聚合物PAF-1–ET对摄取铁(ii)和铁(iii)的选择性高于其他生理和环境相关的金属离子。 Mössbauer光谱,XANES和EXAFS测量提供了证据来支持铁(iii)与材料中基于氧的配体的配位。该聚合物还被成功地用于吸附和去除地下水中的铁离子,包括印度西孟加拉邦的田间源。结合使用8-羟基喹啉比色指示剂,PAF-1–ET可以简单,直接地测定这些样品中的铁(ii)和铁(iii)离子浓度,为分子功能化设计和使用提供了一个起点用于潜在双重检测和修复应用的多孔材料。

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