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Metal loading of lanthanidopolymers driven by positive cooperativity

机译:正合作性驱动镧系元素聚合物的金属负载

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摘要

This work demonstrates how the thermodynamic loading of monodisperse polymeric single-stranded multi-tridentate receptors of variable lengths is controlled by the nature of the metallic carrier Ln(hfac)(3) (Ln is La, Eu or Y, and hfac is hexafluoroacetylacetonate). Whereas the intrinsic affinity of the tridentate binding site is maximum for medium-sized Eu3+ and decreases for Y3+, the contraction of the hydrodynamic radius of the polymer upon metal loading induces positive allosteric cooperativity for the smaller cations. The origin of this behaviour is rationalized within the frame of intermetallic dipole-dipole interactions modulated by the solvation potential of dipolar solutes in dielectric materials. Positive cooperativity produces local high-density of metal ions along the ligand strands (metal clustering) with potential interest in energy migration and sensing processes.
机译:这项工作演示了如何通过金属载体Ln(hfac)(3)的性质(Ln是La,Eu或Y,hfac是六氟乙酰丙酮化物)的性质来控制长度可变的单分散聚合物单链多三齿受体的热力学负载。 。三齿结合位点的固有亲和力对于中等尺寸的Eu3 +最大,而对于Y3 +则减小,而金属负载时聚合物的流体动力学半径的收缩引起较小阳离子的正构构协作性。这种行为的起源在介电材料中的偶极溶质的溶剂化电位所调节的金属间偶极-偶极相互作用的框架内是合理的。正合作性会沿着配体链(金属簇)产生局部高密度的金属离子,对能量迁移和传感过程具有潜在的兴趣。

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