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1.
Energetic materials are aggregative and mixed systems. The intermolecular interactions play significantroles in the physical,chemical and explosive property. The study on intermolecular interactions of energetic materials has attracted wide attention. The organic azides are an important category of energetic materials and widely used in many fields. Ethyl azide is the simple model having the explosive property for the organic azides energetic compound. Ethyl azide monomer(Ⅰ)and all its possible stable clusters(Ⅱ,Ⅲ and Ⅳ)are fully optimized by ab initio method at the HF/6-311++G** level. Vibrational frequencies calculated to ascertain each structure are characterized to be the stable structure(no imaginary frequencies). The proportions of correlated interaction energies to their total interaction energies ΔE(MP2)are 65.14%,63.76% and 65.62% for Ⅱ,Ⅲ and Ⅳ respectively. In addition,the basis set superposition error(BSSE)correction energies are 7.82,7.61 and 4.40 kJ/mol for Ⅱ,Ⅲ and Ⅳ respectively. The zero point energy (ZPE) corrections for the interaction energies are much less than those of MP2 electron correlation and BSSE correction energies. After MP2 electron correlation correction,BSSE and ZPE correction,the greatest corrected intermolecular interaction of the dimers is -10.45 kJ/mol. The charge redistribution mainly occurs on the adjacent N?H atoms between submolecules. The charge transfer between two subsystems is very small. Natural bond orbital(NBO)analysis is performed to reveal the origin of the interaction. Based on the statistical thermodynamic method,the standard thermodynamic functions,heat capacities(C0p),entropies(S0m)and enthalpies(H0m)and the changes of thermodynamic properties from the monomer to dimer with the temperatures ranging from 200. 00 K to 800. 00 K have been obtained.  相似文献   

2.
N-甲硝胺二聚体分子间相互作用的理论研究   总被引:5,自引:1,他引:5  
用ab initio方法,在HF/6-31G水平下求得N-甲硝胺二聚体势能面上3种优化构型,经MP4和MP2校正电子相关能及校正基组叠加误差(BSSE),求得分子间最大相互作用能为-18.81kJ.mol^-1,甲基内旋转对相互作用能影响较大,在标准状态下,由单体形成最稳定二聚体的自由能变化为10.02kJ.mol^-1,同时还讨论了温度对过程的影响。  相似文献   

3.
叠氮化氢二聚体的分子间相互作用   总被引:3,自引:0,他引:3  
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4.
采用从头算MP2方法在6-311++G~**基组水平上讨论了CP梯度校正对两种羟基 二酰亚胺异构体所的相互作用能和几何结构的影响,并利用分子中的原子理论( Atoms in molecules,AIM)计算了五个拓扑参数:键临荷密度、电荷密度的 Iaplacian值、氢键中氢原子的体积、氢原子集居数、氢原子能量来表征氢键的形 成.种构型氢键体系中还讨论了二聚体的相互作用能与氢键临界点的电荷密度、质 子供体X-H键长的线性相关性问题.表明这种线性相关性的存在有范围限制,复合 物和其中单体的构型能够影响这种关系的存在.  相似文献   

5.
超分子体系弱相互作用的量子化学计算   总被引:6,自引:0,他引:6  
封继康 《化学通报》1995,(10):25-28
介绍了近年来超分子体系弱相互作用的最子化学计算方法,重点讨论了严格的从头计算方法及其各种校正技术,介绍了当前进展及其所取得的成果。  相似文献   

6.
分子间相互作用的量子化学研究方法   总被引:16,自引:0,他引:16  
分子间相互作用是一类十分重要的作用, 这类作用的实验和理论研究越来越受到化学家、生物学家、材料科学家等的重视。本文综述了这种相互作用的量子化学研究现状和特点, 主要集中于常见的3 种量子化学方法。并对该领域的研究前景作了展望。  相似文献   

7.
方奇 《结构化学》1995,15(1):74-79
描述了HEK-DDQ,(Co(C5H5)2(Ni(dmit)2)BBBT-DTT三个晶体结构中的π...π,S...S;Br...Br分子间相互作用,讨论了分子晶体中的分子间相线作用的材料化学意义。  相似文献   

8.
硝酸甲酯分子间相互作用的DFT和ab initio比较   总被引:5,自引:0,他引:5  
用密度泛函理论(DFT)和从头算(ab initio)方法,分别在B3LYP/6 31G和HF/6 31G水平上求得硝酸甲酯三种二聚体的全优化几何构型和电子结构,并用6 311G和6 311++G基组进行总能量计算.对HF/6 31G计算结果进行MP4SDTQ电子相关校正.在各基组下均进行基组叠加误差(BSSE)和零点能(ZPE)校正求得结合能.对6 31G优化构型作振动分析并基于统计热力学求得200~600 K温度下单体和二聚体的热力学性质.详细比较两种方法的相应计算结果,发现DFT求得的分子间距离较短,分子内键长较长,所得结合能均小于相应ab initio计算值.  相似文献   

9.
从实验和理论两个方面研究了Z型和E型对甲氧基苯甲醛肟晶体的熔点、 结构、 红外光谱和分子间相互作用. 在E型和Z型晶体中, 对甲氧基苯甲醛肟分子分别呈二聚体重复单元和双链Zigzag结构排列. 研究结果表明, 电荷分布变化引起的静电相互作用差别、 形成氢键的方式和强度以及晶体中分子排列方式导致的范德华作用不同是造成Z型和E型对甲氧基苯甲醛肟固体熔点、 红外光谱等物理性质差别的根本原因.  相似文献   

10.
方奇 《结构化学》1996,15(1):74-79
描述了HEK-DDQ,[Co(C_5H_5)_2][Ni(dmit)_2],BBBT-DTT三个晶体结构中的π…π;S…S;Br…Br分子间相互作用,讨论了分子晶体中的分子间相互作用的材料化学意义。  相似文献   

11.
在MP2/6-311+ +G(3d,3p)电子相关校正水平上,对CH3F二聚体可能存在的几何构型进行全自由度能量梯度优化和频率验证,发现3种势能面上有极小点的构型.进一步在高级电子相关校正的MP4S-DTQ、CCSD(T)/6-311+ +G(3df,3pd)方法水平上,对其中总能量最小的构型进行精确计算,得到二聚体的结合能为-9.707kJ/mol.研究结果支持了由光谱实验结果推测的构型,解释了CH3F二聚体的谐振频率的多样性.  相似文献   

12.
The structures, the binding energies and the thermodynamic properties of formamide and hydroxyacetonitrile(HAN) dimers have been studied by means of the self-consistent ab initio Hartree-Fock and the second-order Mφller-Plesset correlation energy correction methods. The counterpoise procedure was used to check the basis set superposition error(BSSE) of the binding energies. There exist cyclic structures in a formamide dimer(Ⅰ), a HAN dimer(Ⅱ) and their heterodimer(Ⅲ). The corrected binding energies for dimers Ⅰ, Ⅱ and Ⅲ are respectively -45.53, -45.83 and -43.89 kJ/mol at the MP2/aug-cc-p VDZ//HF/aug-cc-p VDZ level. The change of the Gibbs free energies(ΔG) in the process of Ⅰ Ⅱ→2Ⅲ was predicted to be -2.74 kJ/mol at 298.15 K. Dimer Ⅲ can be spontaneously produced in the mixture of formamide and HAN, which is in agreement with the experimental fact that most cyanohydrins are capable of interacting with dipeptide cyclo-His-Phe(CHP).  相似文献   

13.
Intermolecular Interaction of HMX: an Application of ONIOM Methodology   总被引:1,自引:0,他引:1  
IntroductionExtensive studies on intermolecular interac-tions have been made in the past decades due totheir importance in a wide range of physical,chem-ical and biological fields.Researches on the weakintermolecular interactions began with hydrogenbonds.Scheiner summarized the ab initio investiga-tions on hydrogen bonding in detail[1] .With the abinitio method supermolecular structures and bind-ing energies can be predicted notonly for H- bondedsystems but also for other systems[2 _ 5] when …  相似文献   

14.
15.
使用高水平的从头算CCSD(T)/aug-cc-pVTZ方法, 经过Counterpoise校正, 计算了He2F-体系的分子间相互作用势能面. 在He2F-体系的相互作用势能面的最小值处, 发现了一个等腰三角形的稳定结构. 在这个结构中, He…F- 距离是 0.334 nm, He…He 的距离是 0.295 nm, ∠HeF-He 为 52.5°. 计算了此稳定结构的频率、相互作用能、二体相互作用能和三体相互作用能. 在CCSD(T)/d-aug-cc-pVTZ水平下, 相互作用能为-1.727 kJ/mol.  相似文献   

16.
对分子间相互作用比较复杂的N-(1-萘基)琥珀酰亚胺进行理论计算时, 提出了将溶液构建和随机构象搜索相结合的多分子相互作用体系构建方法, 可以简单而准确地得到二聚体和三聚体结构, 其中二聚体结构和采用分子对接方法得到的结果完全一致. 经密度泛函理论计算, 得到了在真空条件下二聚体结构的最低能量构象. 对较大体系的三聚体结构采用高精度分子力学进行了理论计算. 通过分子间相互作用对分子构象的影响讨论了溶液结晶过程中N-(1-萘基)琥珀酰亚胺分子构象变化, 为该化合物结晶机理的深入研究提供重要依据.  相似文献   

17.
甲醛与乙醛,甲醚,硝基甲烷相互作用的从头算研究   总被引:1,自引:0,他引:1  
用6-31G、全构型优化,研究了甲醛与乙醛、甲醚、硝基甲烷的相互作用。结果表明所有超分子稳定构型都包含2个C—H—O氢键的平面环状结构。H—O距离为0.228~0.264 nm,作用能为—19~—24 kJ/mol,与二聚水的作用能接近。稳定性主要取决于甲基上取代基Y吸电子能力以及环状结构中氢键张力。STO-3G不很适用于研究这类分子的相互作用。  相似文献   

18.
6-Chloro-2-diethylaminoethyl-3(2H)-pyridazinone was synthesized by the reaction of 6-chloro-3(2H)-pyridazinone and 2-diethylamionethyl chloride reaction in methylbenzene.Then the structure was characterized by means of ^1H NMR,IR,UV.By the method of ab initio HF and density functional theory(DFT) BeLYP,the geometric structures of the reagent intermediate,the product and its isomer were optimized and their total energies were calculated,The properties for the frontier molecular orbitals and the rules for energy distribution were analyzed systematically.It was shown that the energy of the nitrogen alkyl compound is lower than that of the oxy alkyl compound and the former is stable than the latter.This result is in accordance with the fact that 6-chloro-2-diethylaminoethyl-3(2H)-pyridazinone is synthesized by the reaction of 6-chloride-2-diethylaminoethyl-3(2H)-pyridazinone and 2-diethylaminoethyl chloride.  相似文献   

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