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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Water bridges anchored by a C-H center dot center dot center dot O hydrogen bond: the role of weak interactions in molecular solvation
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Water bridges anchored by a C-H center dot center dot center dot O hydrogen bond: the role of weak interactions in molecular solvation

机译:由C-H中心点中心点中心点中心点O氢键锚定的水桥:弱相互作用在分子溶剂化中的作用

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摘要

The imidazole group, characterized by an activated C(2)-H bond sandwiched between two N atoms, occurs in several biomolecules including alkaloids, amino acids, and nucleobases. The speculated role of this potential hydrogen bond donor in shaping the solvation shell around the neutral imidazole moiety, however, remains unidentified. In contrast, hydrogen bonding and electrostatic interactions are commonly observed in the imidazolium cation where the acidity of the C(2)-H bond is markedly enhanced. Here, we show direct evidence of the weakly activated C(2)-H bond in shaping the solvation shell of neutral imidazole, via spectroscopic characterization of the water clusters (W-n, n = 2-4) of two model compounds, benzimidazole (BIM) and N-methylbenzimidazole (MBIM). Infrared spectra in the OH, NH, and CH stretching regions allow unambiguous detection of a N-WW-C(2)H binding motif in the doubly hydrated cluster of both molecules. Remarkably, H-bonded water bridges between the N atom and N-H bond in BIM-W-3,W-4 clusters are switched to the C(2)-H bond in MBIM-W-3,W-4 with comparable binding strength, indicating that the weakly activated C(2)-H bond in the neutral imidazole moiety can serve as a potent H-bond donor.
机译:咪唑基团的特征是夹在两个N原子之间的活化的C(2)-H键,出现在几种生物分子中,包括生物碱,氨基酸和核碱基。但是,这种潜在的氢键供体在中性咪唑部分周围形成溶剂化壳的推测作用尚不清楚。相反,通常在咪唑鎓阳离子中观察到氢键和静电相互作用,其中C(2)-H键的酸度显着增强。在这里,我们通过对两个模型化合物苯并咪唑(BIM)的水团簇(Wn,n = 2-4)进行光谱表征,显示了在中性咪唑的溶剂化壳成形过程中弱活化的C(2)-H键的直接证据)和N-甲基苯并咪唑(MBIM)。 OH,NH和CH拉伸区域中的红外光谱允许在两个分子的双水合簇中明确检测N-WW-C(2)H结合基序。值得注意的是,BIM-W-3,W-4簇中N原子与NH键之间的H键水桥被切换为MBIM-W-3,W-4中的C(2)-H键,具有相当的结合强度,表明中性咪唑部分中的弱活化C(2)-H键可以作为有效的H键供体。

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