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首页> 外文期刊>Theoretical chemistry accounts >Accurate partial atomic charges for high-energy molecules using class IV charge models with the MIDI! 1)asis set
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Accurate partial atomic charges for high-energy molecules using class IV charge models with the MIDI! 1)asis set

机译:使用带有MIDI的IV级电荷模型,可以对高能分子准确地产生部分原子电荷! 1)简易套装

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We have recently developed a new class IV charge model for calculating partial atomic charges in molecules.The new model,called charge model 39CM3),was parameterized for calculations on molecules containing H,Li,C,N,O,F,Si,S,P,Cl,and Br by Hartree-Fock theory and by hybrid density functional theory9HDFT)based on the modified Perdew-Wang density functional with several basis sets.In the present article,we extend CM3 for calculating partial atomic charges by Hartree-Fock theory with the economical but well balanced MIDI! basis set.Then,using a test set of accurate dipole moments for molecules containing nitr-amine functional groups9which include many high-energy materials),we demonstrate the utility of several parameters designed to improve the charges in molecules containing both N and O atoms.We also show that one of our most recently developed CM3 models that is designed for use with wave functions calculated at the mPWXPW91/MIDI! level of theory9where X denotes a variable percentage of Hartree-Fock exchange)gives accurate charge distributions in nitramines without additional parameters for N and O.To demonstrate the reliability of partial atomic charges calculated with CM3,we use these atomic charges to calculate polarization free energies for several nitramines,including the commonly used explosives 1,3,5-trinitro- s-triazine9RDX)and 2,4,6,8,10,12-hexanitrohexaazaisowurtzitane9HNIW),in nitromethane.These polarization energies are large and negative,indicating that electrostatic interactions between the charge distribution of the molecule and the solvent make a large contribution to the free energy of solvation of nitramines.By extension,the same conclusion should apply to solid-state condensation.Also,in contrast to some other charge models,CM3 yields atomic charges that are relatively insensitive to the presence of buried atoms and small conformational changes in the molecule,as well as to the level of treatment of electron correlation.This type of charge model should be useful in the future development of solvation models and force fields designed to estimate intramolecular interactions of nitramines in the condensed phase.
机译:我们最近开发了一种新的IV类电荷模型,用于计算分子中的部分原子电荷。该新模型称为电荷模型39CM3),已参数化以计算包含H,Li,C,N,O,F,Si,S的分子,P,Cl和Br(基于Hartree-Fock理论和混合密度泛函理论(HDFT)),基于具有多个基集的改进的Perdew-Wang密度泛函。在本文中,我们扩展了CM3以通过Hartree-Fock计算部分原子电荷经济但平衡良好的MIDI理论!然后,使用一套精确的偶极矩测试套件,对包含硝胺官能团的分子(其中包括许多高能材料)进行精确的偶极矩测试,我们证明了设计用于改善包含N和O原子的分子中电荷的几个参数的实用性。我们还展示了我们最新开发的CM3模型之一,该模型旨在与在mPWXPW91 / MIDI上计算的波形函数一起使用!理论水平9(其中X表示Hartree-Fock交换的可变百分比)提供了精确的硝胺中电荷分布,而没有N和O的附加参数。为了证明使用CM3计算的部分原子电荷的可靠性,我们使用这些原子电荷来计算极化自由能硝基甲烷中的几种硝胺,包括常用的炸药1,3,5-三硝基-s-三嗪9RDX和2,4,6,8,10,12-六硝基六氮杂异纤锌矿型结构烷烃9HNIW),这些极化能很大且为负,表明分子的电荷分布与溶剂之间的静电相互作用对硝胺的溶剂化自由能有很大贡献。通过扩展,同样的结论也适用于固态缩合。此外,与其他一些电荷模型相比,CM3产生的原子电荷对埋藏的原子的存在和分子中的小构象变化以及处理水平相对不敏感这种电荷模型在溶剂化模型和力场的未来发展中应该是有用的,该模型旨在估计冷凝相中硝胺的分子内相互作用。

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