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From Atomic to Molecular Anions: A Neutral Receptor Captures Cyanide Using Strong CH Hydrogen Bonds

机译:从原子阴离子到分子阴离子:中性受体利用强CH氢键捕获氰化物

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The multifaceted character of cyanide as an acceptor of hydrogen bonds from a receptor has been examined for the first time using electronic-structure theory and spectroscopic measurements (UV/Vis and NMR titrations). Motivated by the similar size and charge of the cyanide pseudohalide and the monoatomic chloride ion, strong interactions of cyanide with a rigid macrocyclic triazolophane receptor have been predicted by theory and confirmed by experimental findings. It was found that both anions bind with similar strength in the gas phase (computed) and in the solution phase (experimental) via CH hydrogen bonds. Theoretical calculations predict that the heterodiatomic cyanide prefers to bind in the plane of the macrocycle along the north–south axis. Examination of the possible binding modes reveal low computed barriers for in-plane rotation. The predicted model is consistent with the experimental data. Overall, the binding of a molecular anion within the cavity of a triazolophane receptor has been characterized where the computed and experimental binding energies are consistent with the classification of cyanide as a pseudohalide in the context of supramolecular chemistry.
机译:氰化物作为来自受体的氢键受体的多方面特征已首次使用电子结构理论和光谱测量(UV / Vis和NMR滴定法)进行了研究。由于氰化物假卤化物和单原子氯离子具有相似的大小和电荷,因此理论上已经预测了氰化物与刚性大环三唑并菲受体的强烈相互作用,并得到了实验结果的证实。发现两种阴离子通过CH氢键在气相(计算值)和溶液相(实验值)中具有相似的强度结合。理论计算预测,异二氰化物氰化物倾向于沿南北轴结合在大环平面中。可能的绑定模式的检查揭示了平面内旋转的低计算障碍。预测模型与实验数据一致。总的来说,已经表征了三唑烷受体腔内分子阴离子的结合,其中计算的和实验的结合能与超分子化学背景下氰化物作为假卤化物的分类一致。

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