首页> 外文期刊>Journal of the American Chemical Society >Supramolecular chemistry of halogens: Complementary features of inorganic (M-X) and organic (C-X ') halogens applied to M-X center dot center dot center dot X '-C halogen bond formation
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Supramolecular chemistry of halogens: Complementary features of inorganic (M-X) and organic (C-X ') halogens applied to M-X center dot center dot center dot X '-C halogen bond formation

机译:卤素的超分子化学:应用于M-X中心点中心点中心点中心点X'-C卤素键形成的无机(M-X)和有机(C-X')卤素的互补特征

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摘要

Electronic differences between inorganic (M-X) and organic (C-X) halogens in conjunction with the anisotropic charge distribution associated with terminal halogens have been exploited in supramolecular synthesis based upon intermolecular M-X center dot center dot center dot X'-C halogen bonds. The synthesis and crystal structures of a family of compounds trans-[MCl2(NC5H4X-3)(2)] (M = Pd(l]), Pt(II); X = F, Cl, Br, 1; NC5H4X-3 = 3-halopyridine) are reported. With the exception of the fluoropyridine compounds, network structures propagated by M-Cl... X-C halogen bonds are adopted and involve all M-Cl and all C-X groups. M-Cl center dot center dot center dot X-C interactions show Cl center dot center dot center dot X separations shorter than van der Waals values, shorter distances being observed for heavier halogens (X). Geometries with near linear Cl center dot center dot center dot X-C angles (155-172 degrees) and markedly bent M-Cl center dot center dot center dot X angles (92-137 degrees) are consistently observed. DFT calculations on the model dimers {trans-[MCl2(NH3)(NC5H4X-3)]}(2) show association through M-Cl center dot center dot center dot X-C (X not equal F) interactions with geometries similar to experimental values. DFT calculations of the electrostatic potential distributions for the compounds trans-[PdCl2(NC5H4X-3)(2)] (X = F, Cl, Br, 1) demonstrate the effectiveness of the strategy to activate C-X groups toward halogen bond formation by enhancing their electrophilicity, and explain the absence of M-Cl center dot center dot center dot F-C interactions. The M-Cl center dot center dot center dot X-C halogen bonds described here can be viewed unambiguously as nucleophile-electrophile interactions that involve an attractive electrostatic contribution. This contrasts with some types of halogen-halogen interactions previously described and suggests that M-Cl center dot center dot center dot X-C halogen bonds could provide a valuable new synthon for supramolecular chemists.
机译:在基于分子间M-X中心点中心点中心点X'-C卤素键的超分子合成中,已经利用了无机(M-X)和有机(C-X)卤素之间的电子差异以及与末端卤素相关的各向异性电荷分布。一族化合物反式[[MCl2(NC5H4X-3)(2)](M = Pd(l]),Pt(II); X = F,Cl,Br,1; NC5H4X-3的合成和晶体结构= 3-卤代吡啶)。除氟吡啶化合物外,采用通过M-Cl ... X-C卤素键传播的网络结构,并涉及所有M-Cl和所有C-X基团。 M-Cl中心点中心点中心点X-C相互作用显示Cl中心点中心点中心点X的间隔比范德华值短,对于较重的卤素(X)观察到更短的距离。始终观察到具有接近线性的Cl中心点中心点中心点X-C角(155-172度)和明显弯曲的M-Cl中心点中心点中心点X角(92-137度)的几何形状。对模型二聚体{trans- [MCl2(NH3)(NC5H4X-3)]}(2)的DFT计算显示,通过M-Cl中心点中心点中心点中心点XC(X不等于F)相互作用与几何形状与实验值相似的关联。 DFT计算化合物反式-[PdCl2(NC5H4X-3)(2)](X = F,Cl,Br,1)的静电势分布证明了该策略通过增强CX基团朝形成卤素键的作用是有效的它们的亲电性,并解释了M-Cl中心点中心点中心点FC相互作用的缺失。此处所述的M-Cl中心点中心点中心点X-C卤素键可以明确地视为亲核体-亲电体相互作用,其中涉及有吸引力的静电作用。这与先前描述的某些类型的卤素-卤素相互作用形成对比,并表明M-Cl中心点中心点中心点X-C卤素键可为超分子化学家提供有价值的新合成子。

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