Assemblies Of Cucurbit[6]Uril-Based Coordination Complexes With Disulfonate Ligands: From Discrete Complexes To One- And Two-Dimensional Polymers

CRYSTENGCOMM(2021)

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摘要
In this work, the combination of cucurbit[6]uril (Q[6]) with various naphthalene disulfonates and alkalineearth metal ions allows for successful isolation of 9 novel 0161-based coordination complexes with the formulas [Ca(H2O)(4)(Q[6])(0.5)(1.5-NDA)(0.5)]center dot(1.5-NDA)(0.5)center dot 3H(2)O (1), [Sr(H2O)(4)(Q[6])(0.5)(1,5-NDA)(0.5)]center dot(1,5-NDA)(0.5)center dot 4H(2)O (2), [Ba(H2O)(4)(Q[6])(0)(.5)(1,5-NDA)(0.5)]center dot(1,5-NDA)(0.5)center dot 4H(2)O (3), (Ca(H2O)(5)(Q[6])(0.5))(2,6-NDA)center dot 9H(2)O (4), (Sr(H2O)(5)(Q[6])(0.5)]center dot(2,6-NDA)center dot 6H(2)O (5), [Ba-2(H2O)(7)(Q[6])(2,6-NDA)(2)]center dot 11H(2)O (6), [Sr(H2O)(4)(Q[6]()0.5)(2,6-NDA)(0.5)]center dot(2,6-NDA)(0.5)center dot 5H(2)O (7), (Ca-2(H2O)(10)(Q[6])](2,7-NDA)center dot 14H(2)O (8) and (Sr(H2O)(5)(Q[6])(2,7-NDA)]center dot 4H(2)O (9) (H(2)NDA = naphthalenedisulfonic acid). Structural analysis revealed that the carbonyl groups of 0161 bind directly to the alkaline-earth metal ions to form 1D coordination chains. Moreover, the metal ions are also linked to the disulfonate substituents of the naphthalenes, which, in the case of 9, resulted in a simple coordination complex, for 6, a 1D Q[6]-NDA-M2+ chain, and in the case of 1-3 and 7, 2D networks. By contrast, for 4, 5 and 8, the disulfonate ligands do not bind to the metals, and instead, act as supramolecular linkers. The resultant 3D supramolecular architecture of these compounds was constructed through various noncovalent interactions, particularly involving outer-surface interactions of the Q[6]s. Furthermore, the fluorescence properties of species 2 and 7 were investigated, and sensing experiments indicated that both were capable of functioning as fluorescent sensors for Fe3+ with high sensitivity and selectivity.
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