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异双核[Pd2(La)2(Lb)2](4+)笼的可控合成。

Controlled Formation of Heteroleptic [Pd2(La)2(Lb)2](4+) Cages.

机构信息

Department of Chemistry, University of Otago , P.O. Box 56, Dunedin 9054, New Zealand.

出版信息

J Am Chem Soc. 2016 Aug 24;138(33):10578-85. doi: 10.1021/jacs.6b05629. Epub 2016 Aug 12.

Abstract

Metallosupramolecular architectures are beginning to be exploited for a range of applications including drug delivery, catalysis, molecular recognition, and sensing. For the most part these achievements have been made with high-symmetry metallosupramolecular architectures composed of just one type of ligand and metal ion. Recently, considerable efforts have been made to generate metallosupramolecular architectures that are made up of multiple different ligands and/or metals ions in order to obtain more complex systems with new properties. Herein we show that the addition of an electron-rich 2-amino-substituted tripyridyl ligand, 2,6-bis(pyridin-3-ylethynyl)pyridine (2A-tripy), to a solution of the Pd2(tripy)4 cage resulted in the clean generation of a heteroleptic Pd2(tripy)2(2A-tripy)2 architecture. The formation of the mixed-ligand cage Pd2(tripy)2(2A-tripy)2 was confirmed using (1)H NMR spectroscopy, diffusion-ordered spectroscopy, and rotating-frame nuclear Overhauser effect spectroscopy and high-resolution electrospray ionization mass spectrometry. Density functional theory calculations suggested the cis isomer was more stable that the trans isomer. Additionally, the calculations indicated that the heteroleptic palladium(II) cages are kinetically metastable intermediates rather than the thermodynamic product of the reaction. Competition experiments supported that finding and showed the cages are long-lived in solution at room temperature. Finally, it was shown that the addition of 2A-tripy to a range of preformed Pd2(Ltripy)4 cages cleanly generated the mixed-ligand systems. Three other systems displaying different exo and endo functionalities within the cage assembly were generated, suggesting that this method could be applied to synthesize a range of highly functionalized heteroleptic cis-Pd2(La)2(Lb)2 cages.

摘要

金属超分子架构开始被应用于各种领域,包括药物输送、催化、分子识别和传感。在大多数情况下,这些成就是通过具有单一配体和金属离子的高对称金属超分子架构实现的。最近,人们已经做出了相当大的努力来生成由多种不同的配体和/或金属离子组成的金属超分子架构,以获得具有新性质的更复杂的系统。在这里,我们展示了向Pd2(tripy)4笼的溶液中加入富电子的 2-氨基取代的三吡啶配体 2,6-双(吡啶-3-基乙炔基)吡啶(2A-tripy),可干净地生成杂配位的Pd2(tripy)2(2A-tripy)2架构。使用(1)H NMR 光谱、扩散有序光谱、旋转框架核 Overhauser 效应光谱和高分辨率电喷雾电离质谱证实了混合配体笼Pd2(tripy)2(2A-tripy)2的形成。密度泛函理论计算表明顺式异构体比反式异构体更稳定。此外,计算表明杂配位钯(II)笼是动力学亚稳中间体,而不是反应的热力学产物。竞争实验支持了这一发现,并表明在室温下,笼在溶液中具有长寿命。最后,表明向一系列预形成的Pd2(Ltripy)4笼中加入 2A-tripy 可干净地生成混合配体体系。还生成了三个具有不同笼组装内外官能团的其他体系,这表明该方法可用于合成一系列具有高官能化杂配位顺式-Pd2(La)2(Lb)2笼。

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