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A supramolecular lanthanide separation approach based on multivalent cooperative enhancement of metal ion selectivity

机译:基于多价协同增强金属离子选择性的超分子镧系元素分离方法

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Multivalent cooperativity plays an important role in the supramolecular self-assembly process. Herein, we report a remarkable cooperative enhancement of both structural integrity and metal ion selectivity on metal-organic M4L4 tetrahedral cages self-assembled from a tris-tridentate ligand (L1) with a variety of metal ions spanning across the periodic table, including alkaline earth (CaII), transition (CdII), and all the lanthanide (LnIII) metal ions. All these M4L14 cages are stable to excess metal ions and ligands, which is in sharp contrast with the tridentate (L2) ligand and bis-tridentate (L3) ligand bearing the same coordination motif as L1. Moreover, high-precision metal ion self-sorting is observed during the mixed-metal self-assembly of tetrahedral M4L4 cages, but not on the M2L3 counterparts. Based on the strong cooperative metal ion self-recognition behavior of M4L4 cages, a supramolecular approach to lanthanide separation is demonstrated, offering a new design principle of next-generation extractants for highly efficient lanthanide separation.
机译:多价合作性在超分子自组装过程中起着重要作用。在本文中,我们报告了由三三齿配体(L1)自组装的金属有机M4L4四面体笼子的结构完整性和金属离子选择性的显着协同增强作用,这些笼罩跨过元素周期表的各种金属离子,包括碱土(CaII),过渡金属(CdII)和所有镧系元素(LnIII)金属离子。所有这些M4L14笼子都对过量的金属离子和配体稳定,这与带有与L1相同配位基序的三齿(L2)配体和双三齿(L3)配体形成鲜明对比。此外,在四面体M4L4保持架的混合金属自组装过程中观察到了高精度的金属离子自分选,但在M2L3笼中却没有。基于M4L4笼子的强协同金属离子自识别行为,证明了超分子方法对镧系元素的分离,为高效镧系元素的分离提供了新一代萃取剂的新设计原理。

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