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首页> 外文期刊>Journal of Molecular Structure. Theochem: Applications of Theoretical Chemistry to Organic, Inorganic and Biological Problems >Density functional theory studies on the molecular structures and thermodynamic properties of polychlorinated anthracenes
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Density functional theory studies on the molecular structures and thermodynamic properties of polychlorinated anthracenes

机译:密度泛函理论研究多氯蒽的分子结构和热力学性质

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摘要

Geometric molecular structures of 287 polychlorinated anthracenes (PCANs) were optimized using density functional theory (DFT) at the B3LYP/6-311G(d,p) level and their thermodynamic properties in the ideal gas state (heat capacity at constant volume (C-v(theta)), entropy (S-theta). enthalpy (H-theta), Gibbs energy (G(theta)), standard enthalpy of formation (Delta H-f(theta)) and standard Gibbs energy of formation (Delta(f)G(theta))) were computed. The relations of C-v(theta), S-theta, Delta H-f(theta) and Delta(f)G(theta) with the number and position of chlorine atoms were also explored. According to the magnitude of the relative standard Gibbs energy of formation (Delta(r,f)G(theta)), the relative stability of PCAN congeners was theoretically proposed. It was found that some PCAN isomers have a planar configuration while others adopt a nonplanar configuration. Both the values of C-v(theta) and S-theta increase with successive chlorination while the values of Delta H-f(theta) and Delta(f)G(theta) of the most stable PCAN isomers decrease initially and then increase with increasing the degree of chlorination. The values of Delta H-f(theta) and Delta(f)G(theta) of PCAN congeners with the same number of chlorine atoms show a strong dependence on the position of chlorine substitution. The relative thermodynamic stability of PCAN isomers is determined mainly by relative magnitude of intramolecular delocalized pi bond and Cl-Cl nuclear repulsive interaction.
机译:使用密度泛函理论(DFT)在B3LYP / 6-311G(d,p)水平上优化了287个多氯蒽(PCAN)的几何分子结构,并在理想气体状态下(恒定体积的热容(Cv( theta)),熵(S-theta),焓(H-theta),吉布斯能量(G(theta)),标准形成焓(Delta Hf(theta))和标准吉布斯形成能量(Delta(f)G (θ)))。还探讨了C-vθ,S-θ,δH-fθ和δ(f)Gθ与氯原子数量和位置的关系。根据相对标准吉布斯形成能的量(Delta(r,f)G(θ)),从理论上提出了PCAN同类物的相对稳定性。发现一些PCAN异构体具有平面构型,而另一些采用非平面构型。 Cvθ和S-θ值都随连续氯化而增加,而最稳定的PCAN异构体的DeltaHfθ和Delta(f)Gθ值先降低,然后随着C度的增加而增加。氯化。具有相同氯原子数的PCAN同系物的Delta H-f(θ)和Delta(f)G(theta)值强烈依赖于氯取代的位置。 PCAN异构体的相对热力学稳定性主要取决于分子内离域pi键的相对大小和Cl-Cl核排斥相互作用。

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