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Anion-π Interactions as Controlling Elements in Self-Assembly Reactions of Ag(Ⅰ) Complexes with π-Acidic Aromatic Rings

机译:阴离子-π相互作用作为控制元件(带有π-酸性芳环的Ag(Ⅰ)配合物的自组装反应)

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摘要

Reactions of 3,6-bis(2′-pyridyl)-1,2,4,5-tetrazine (bptz) and 3,6-bis(2′-pyridyl)-1,2-pyridazine (bppn) with the AgX salts (X = [PF_6]~-, [AsF_6]~-, [SbF_6]~-, and [BF_4]~-) afford complexes of different structural motifs depending on the π-acidity of the ligand central ring and the outer-sphere anion. The bptz reactions lead to the polymeric {[Ag(bptz)][PF_6]}_∞ (1) and the dinuclear compounds [Ag_2(bptz)_2(CH_3CN)_2][PF_6]_2 (2) and [Ag_2(bptz)_2(CH_3CN)_2][AsF_6]_2 (3), as well as the propeller-type species [Ag_2(bptz)_3][AsF_6]_2 (4) and [Ag_2(bptz)_3]-[SbF_6]_2 (5a and 5b). Reactions of bppn with AgX produce the grid-type structures [Ag_4(bppn)_4][X]_4 (6-9), regardless of the anion present. In 6-9, π-π stacking interactions are maximized, whereas multiple and shorter (therefore stronger) anion-π interactions between the anions and the tetrazine rings are established in 1 -5b. These differences reflect the more electron-rich character of the bppn pyridazine ring as compared to the bptz tetrazine ring. The evidence gleaned from the solid-state structures was corroborated by density functional theory calculations. In the electrostatic potential maps of the free ligands, a higher positive charge is present in the bptz as compared to the bppn central ring. Furthermore, the electrostatic potential maps of 3,4, and 5b indicate an electron density transfer from the anions to the π-acidic rings. Conversely, upon addition of the [AsF_6]~- ions to the cation of 7, there is negligible change in the electron density of the central pyridazine ring, which supports the presence of weaker anion-π interactions in the bppn as compared to the bptz complexes. From the systems studied herein, it is concluded that anion-π interactions play an important role in the outcome of self-assembly reactions.
机译:3,6-双(2'-吡啶基)-1,2,4,5-四嗪(bptz)和3,6-双(2'-吡啶基)-1,2-哒嗪(bppn)与AgX的反应盐(X = [PF_6]〜-,[AsF_6]〜-,[SbF_6]〜-和[BF_4]〜-)根据配体中心环和外环的π酸度提供不同结构图案的配合物球形阴离子。 bptz反应导致聚合的{[Ag(bptz)] [PF_6]} _∞(1)和双核化合物[Ag_2(bptz)_2(CH_3CN)_2] [PF_6] _2(2)和[Ag_2(bptz )_2(CH_3CN)_2] [AsF_6] _2(3)以及螺旋桨型物质[Ag_2(bptz)_3] [AsF_6] _2(4)和[Ag_2(bptz)_3]-[SbF_6] _2 (5a和5b)。 bppn与AgX的反应产生网格类型的结构[Ag_4(bppn)_4] [X] _4(6-9),与存在的阴离子无关。在6-9中,π-π堆积相互作用最大化,而阴离子与四嗪环之间的多个且更短(因此更强)的阴离子-π相互作用建立在1 -5b中。这些差异反映了与bptz四嗪环相比,bppn哒嗪环具有更富电子的特征。密度泛函理论计算证实了从固态结构收集的证据。在游离配体的静电势图中,与bppn中心环相比,bptz中存在更高的正电荷。此外,3,4和5b的静电势图表明电子密度从阴离子转移到π酸环。相反,在[7]的阳离子中添加[AsF_6]〜离子后,中央哒嗪环的电子密度变化可忽略不计,这表明与bptz相比,bppn中存在较弱的阴离子-π相互作用。复合体。从本文研究的系统得出结论,阴离子-π相互作用在自组装反应的结果中起重要作用。

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