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A functionalized metal–organic framework decorated with O– groups showing excellent performance for lead(ii) removal from aqueous solution

机译:用O-基团修饰的功能化金属有机框架显示出从水溶液中去除铅(ii)的出色性能

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摘要

Heavy metal ions are highly toxic and widely spread as environmental pollutants. New strategies are being developed to efficiently remove these toxic ions. Herein, we use the intrinsic advantages of metal–organic frameworks (MOFs) and develop a porous Zn(ii)-based MOF decorated with O groups for the removal of Pb2+. Benefiting from its multiple porosity, sufficient adsorption sites and strong affinity, the activated MOF material exhibits an ultrahigh Pb2+ uptake capacity (616.64 mg g–1), surpassing all those of reported MOF adsorbents. Moreover, it can selectively capture Pb2+ with high efficiency (>99.27%) against background ions. Even in the presence of a high concentration of competitive ions, such as Ca2+ or Mg2+, effective removal (>99.21%) can also be achieved in a short time. The excellent removal performance demonstrates the strong electrostatic attraction and coordination interaction between the highly accessible O groups and Pb2+. The possible adsorption mechanism was systematically verified by zeta potential, FT-IR and XPS studies. Our work reveals the enormous potential of functionalized MOFs as an appealing platform to construct sorbent materials.
机译:重金属离子具有剧毒,并作为环境污染物广泛传播。正在开发有效去除这些有毒离子的新策略。在本文中,我们利用金属有机框架(MOF)的固有优势,开发了用O 基修饰的多孔Zn(ii)基MOF,以去除Pb 2 + 。得益于其多孔性,足够的吸附位点和强大的亲和力,活化的MOF材料具有超高的Pb 2 + 吸收能力(616.64 mg g –1 ),超过了所有这些报告的MOF吸附剂的数量。而且,它可以选择性地捕获对背景离子的Pb 2 + ,效率高(> 99.27%)。即使存在高浓度竞争离子(例如Ca 2 + 或Mg 2 + ),也可以在短时间内实现有效去除(> 99.21%)时间。优异的去除性能证明了高度可及的O 基团与Pb 2 + 之间的强静电吸引和配位相互作用。 ζ电位,FT-IR和XPS研究系统地验证了可能的吸附机理。我们的工作揭示了功能化MOF作为构建吸附剂材料的吸引力平台的巨大潜力。

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