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Polarizable Empirical Force Field for Halogen-containing Compounds Based on the Classical Drude Oscillator

机译:基于经典德鲁振荡器的含卤素化合物的极化经验力场

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摘要

The quality of the force field is crucial to ensure the accuracy of simulations used in molecular modeling, including computer-aided drug design (CADD). To perform more accurate modeling and simulations of halogenated molecules, in this study the polarizable force field based on the classical Drude oscillator model was extended to both aliphatic and aromatic systems using halogenated ethane and benzene model compounds, for the halogens F, Cl, Br or I. The force field parameters were optimized targeting quantum mechanical dipole moments, water interactions, and molecular polarizabilities as well as experimental observables, including enthalpies of vaporization, molecular volumes, hydration free energies, and dielectric constants. The developed halogenated polarizable force field is capable of reproducing QM relative energies and geometries of both halogen bonds and halogen-hydrogen bond donor interactions at an unprecedented level due to the inclusion of a virtual particle and anisotropic atomic polarizability on the halogen and, notably, the inclusion of Lennard-Jones parameters on the halogen Drude particle. The model was validated based on its ability to accurately reproduce pure solvent properties for halogenated naphthalenes and alkanes, including species analogous to those used as refrigerants. Accordingly, it is anticipated that the model will be applicable for the study of halogenated derivatives in CADD as well as in other chemical and biophysical studies.
机译:力场的质量对于确保分子建模(包括计算机辅助药物设计(CADD))中使用的仿真的准确性至关重要。为了对卤代分子进行更精确的建模和模拟,在这项研究中,基于经典Drude振荡器模型的可极化力场被扩展到使用卤代乙烷和苯模型化合物的脂肪族和芳香族体系,包括卤素F,Cl,Br或I.优化了力场参数,以量子力学偶极矩,水相互作用和分子极化率以及实验可观测值为目标,包括汽化焓,分子体积,水合自由能和介电常数。发达的卤化极化力场能够在空前的水平上再现卤素键和卤素-氢键供体相互作用的QM相对能量和几何形状,这是因为卤素上包含了虚拟粒子和各向异性原子极化性,尤其是将Lennard-Jones参数包含在卤素Drude粒子上。该模型基于其能够准确再现卤代萘和烷烃(包括与用作制冷剂的物质类似的物质)的纯溶剂性质的能力而得到验证。因此,预计该模型将适用于CADD中的卤代衍生物的研究以及其他化学和生物物理研究。

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  • 年(卷),期 -1(14),2
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  • 页码 1083–1098
  • 总页数 37
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