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基于 NHC 的钯大环的合成、结构和动力学。

Synthesis, structure and dynamics of NHC-based palladium macrocycles.

机构信息

Department of Chemistry, University of Warwick, Gibbet Hill Road, Coventry CV4 7AL, UK.

出版信息

Dalton Trans. 2014 Jan 21;43(3):1413-23. doi: 10.1039/c3dt52578c. Epub 2013 Nov 8.

DOI:10.1039/c3dt52578c
PMID:24201818
Abstract

A series of macrocyclic CNC pincer pro-ligands based on bis(imidazolium)lutidine salts with octa-, deca- and dodecamethylene spacers have been prepared and their coordination chemistry investigated. Using a Ag2O based transmetallation strategy, cationic palladium(II) chloride complexes [PdCl{CNC-(CH2)n}][BAr(F)4] (n = 8, 10, 12; Ar(F) = 3,5-C6H3(CF3)2) were prepared and fully characterised in solution, by NMR spectroscopy and ESI-MS, and in the solid-state, by X-ray crystallography. The smaller macrocyclic complexes (n = 8 and 10) exhibit dynamic behaviour in solution, involving ring flipping of the alkyl spacer across the Pd-Cl bond, which was interrogated by variable temperature NMR spectroscopy. In the solid-state, distorted coordination geometries are observed with the spacer skewed to one side of the Pd-Cl bond. In contrast, a static C2 symmetric structure is observed for the dodecamethylene based macrocycle. For comparison, palladium(II) fluoride analogues [PdF{CNC-(CH2)n}][BAr(F)4] (n = 8, 10, 12) were also prepared and their solution and solid-state structures contrasted with those of the chlorides. Notably, these complexes exhibit very low frequency (19)F chemical shifts (ca. -400 ppm) and the presence of C-H···F interactions ((2h)J(FC) coupling observed by (13)C NMR spectroscopy). The dynamic behaviour of the fluoride complexes is largely consistent with the smaller ancillary ligand; [PdF{CNC-(CH2)8}][BAr(F)4] exceptionally shows C(2v) time averaged symmetry in solution at room temperature (CD2Cl2, 500 MHz) as a consequence of dual fluxional processes of the pincer backbone and alkyl spacer.

摘要

一系列基于双(咪唑基)吡啶盐的大环 CNC 钳状前配体,具有八、十和十二亚甲基间隔基,已被制备并研究了它们的配位化学。使用基于 Ag2O 的转移金属化策略,制备了阳离子钯(II)氯化物配合物[PdCl{CNC-(CH2)n}][BAr(F)4](n = 8、10、12;Ar(F) = 3、5-C6H3(CF3)2),并通过 NMR 光谱、ESI-MS 在溶液中,和通过 X 射线晶体学在固态中进行了充分的表征。较小的大环配合物(n = 8 和 10)在溶液中表现出动态行为,涉及烷基间隔基在 Pd-Cl 键上的翻转,这通过变温 NMR 光谱进行了检测。在固态中,观察到扭曲的配位几何形状,间隔基偏向于 Pd-Cl 键的一侧。相比之下,十二亚甲基基大环观察到静态 C2 对称结构。作为比较,还制备了钯(II)氟化物类似物[PdF{CNC-(CH2)n}][BAr(F)4](n = 8、10、12),并对比了它们的溶液和固态结构与氯化物的结构。值得注意的是,这些配合物表现出非常低的(19)F 化学位移(约-400 ppm)和 C-H···F 相互作用((2h)J(FC)通过(13)C NMR 光谱观察到耦合)。氟化物配合物的动态行为在很大程度上与较小的辅助配体一致;[PdF{CNC-(CH2)8}][BAr(F)4] 异常情况下在室温下(CD2Cl2,500 MHz)在溶液中表现出 C(2v)时间平均对称性,这是由于钳状骨架和烷基间隔基的双重通量过程的结果。

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