首页> 外文期刊>Journal of chemical theory and computation: JCTC >Modeling Halogen Bonds in Ionic Liquids: A Force Field for Imidazolium and Halo-Imidazolium Derivatives
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Modeling Halogen Bonds in Ionic Liquids: A Force Field for Imidazolium and Halo-Imidazolium Derivatives

机译:离子液体中的卤素键模型:咪唑鎓和卤代咪唑鎓衍生物的力场

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摘要

In this work, a force field for molecular dynamics and Monte Carlo simulations of ionic liquids containing imidazolium and halo-imidazolium derivatives is presented. This force field is an extension of the well-known CL&P and OPLS-AA models and was validated by comparing predicted crystalline structures for 22 ionic liquid compounds with the corresponding data deposited at the Cambridge Structural Database. The obtained results indicate that the proposed force field extension allows the reproduction of the crystal data with an absolute average deviation lower than 2.4%. Finally, it was also established that the halogen atoms covalently bound to the studied imidazolium cations are positively charged and do not exhibit a so-called sigma-hole feature. For this reason, the formation of halogen bonds in the proposed force field appears naturally from the parametrized atomic point charge distribution, without the necessity of any extra interaction sites.
机译:在这项工作中,力场的分子动力学和蒙特卡罗模拟离子液体含有咪唑和卤代咪唑衍生物提出。该力场是著名的CL&P和OPLS-AA模型的扩展,并通过将22种离子液体化合物的预测晶体结构与剑桥结构数据库中存储的相应数据进行比较来验证。结果表明,所提出的力场扩展方法可以再现晶体数据,其绝对平均偏差小于2.4%。最后,还确定与所研究的咪唑阳离子共价结合的卤素原子带正电荷,并且不显示所谓的sigma空穴特征。因此,在所提出的力场中,卤素键的形成从参数化的原子点电荷分布中自然出现,而不需要任何额外的相互作用位点。

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