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Strength, character, and directionality of halogen bonds involving cationic halogen bond donors

机译:涉及阳离子卤素键供体的卤素键的强度,性格和方向性

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Halogen bonds involving cationic halogen bond donors and anionic halogen bond acceptors have recently been recognized as being important in stabilizing the crystal structures of many salts. Theoretical characterization of these types of interactions, most importantly in terms of their directionality, has been limited. Here we generate high-quality symmetry adapted perturbation theory potential energy curves of a H3N-C equivalent to C-Br+center dot center dot center dot Cl- modelsystem in order to characterize halogen bonds involving charged species, in terms of contributions from electrostatics, exchange, induction, and dispersion, with special emphasis on analyzing contributions that are most responsible for the directionality of these interactions. It is found that, as in the case of neutral halogen bonds, exchange forces are important contributors to the directionality of charged halogen bonds, however, it is also found that induction effects, which contribute little to the stability and directionality of neutral halogen bonds, play a large role in the directionality of halogen bonds involving charged species. Potential energy curves based on the omega B97X-D/def2-TZVP/C-PCM method, which includes an implicit solvation model in order to mimic the effects of the crystal medium, are produced for both the H3N-C equivalent to C-Br+center dot center dot center dot Cl- model system and for the 4-bromoanilinium center dot center dot center dot Cl- dimer, which is based on the real 4-bromoanilinium chloride salt, whose crystal structure has been determined experimentally. It is found that, within a crystal-like medium, charged halogen bond are significantly weaker than in the gas phase, having optimum interaction energies up to approximately -20 kcal mol(-1).
机译:涉及阳离子卤素供体和阴离子卤素受体的卤素键已被认为是在稳定许多盐的晶体结构方面很重要。这些类型的相互作用的理论表征,最重要的是在其方向性方面受到限制。在这里,我们生成高质量对称性适应的扰动理论潜在能量曲线,其相当于C-BR +中心点中心点中心点CL-型号系统,以表征涉及带电物种的卤素键,就静电的贡献,交换,归纳和分散,特别强调分析最负责这些相互作用方向性的贡献。结果发现,如中性卤素键的情况下,交换力是对带电卤素键的方向性的重要贡献者,然而,还发现诱导效果,这有助于中性卤素键的稳定性和方向性,在涉及带电物种的卤素键的方向性中发挥着大作用。基于OMEGA B97X-D / DEF2-TZVP / C-PCM方法的潜在能量曲线,包括隐式溶剂化模型,以模拟晶体介质的效果,用于等于C-BR的H3N-C +中心点中心点中心点CL-模型系统和4-溴尼尼鎓中心点中心点中心点CL-二聚体,其基于真实的4-溴氯化铝盐,其晶体结构已经通过实验确定。发现,在晶体状介质内,带电卤素键显明于气相中的卤素键,其具有最佳的相互作用能量至约-20kcal摩尔(-1)。

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