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首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Prediction of molecular properties including symmetry from quantum-based molecular structural formulas, VIF
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Prediction of molecular properties including symmetry from quantum-based molecular structural formulas, VIF

机译:通过基于量子的分子结构式,VIF预测分子性质,包括对称性

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Structurally covariant valency interaction formulas, VIF, gain chemical significance by comparison with resonance structures and natural bond orbital, NBO, bonding schemes and at the same time allow for additional prediction such as symmetry of ring systems and destabilization of electron pairs with respect to reference energy of -1/2 E-h. Comparisons are based on three chemical interpretations of Sinanoglu's theory of structural covariance: (1) sets of structurally covariant quantum structural formulas, VIF, are interpreted as the same quantum operator represented in linearly related basis frames; (2) structurally covariant VIF pictures are interpreted as sets of molecular species with similar energy; and (3) the same VIF picture can be interpreted as different quantum operators, one-electron density or Hamiltonian; for example. According to these three interpretations, bond pair, lone pair, and free radical electrons understood in terms of a localized orbital representation are recognized as having energies above, below, or equal to a predetermined reference, frequently -1/2 E-h. The probable position of electron pairs and radical electrons is predicted. The selectivity of concerted ring closures in allyl anion and cation is described. Symmetries of conjugated ring systems are predicted according to their numbers of pi-electrons and spin-multiplicity. The pi-distortivity of benzene is predicted. The 3c/2e(-) H-bridging bonds in diborane are derived in a natural way according to the notion that the bridging bonds will have delocalizing interactions between them consistent with results of the NBO method. Key chemical bonding motifs are described using VIF. These include 2c/1e(-), 2c/2e(-), 2c/3e(-), 3c/2e(-), 3c/3e(-), 3c/4e(-), 4n antiaromatic, and 4n+2 aromatic bonding systems. Some common organic functional groups are represented as VIF pictures and because these pictures can be interpreted simultaneously as one-electron density and Hamiltonian operators, the valence shell electron pair repulsion method is applied toward understanding the energies of valence NBOs with respect to the reference energy of -1/2 E-h.
机译:通过与共振结构和自然键轨道,NBO,键合方案进行比较,结构上的协价价相互作用公式VIF获得了化学意义,并且同时允许进行其他预测,例如环系统的对称性以及相对于参考能量的电子对的不稳定-1/2 Eh。比较是基于对Sinanoglu的结构协方差理论的三种化学解释:(1)组结构协变量子结构公式VIF被解释为线性相关基础框架中表示的同一量子算符; (2)将结构协变的VIF图片解释为具有相似能量的分子种类的集合; (3)相同的VIF图片可以解释为不同的量子算符,单电子密度或哈密顿量。例如。根据这三种解释,就局部轨道表示而言理解的键对,孤对和自由基电子被认为具有高于,低于或等于预定参考的能量,通常为-1/2 E-h。预测了电子对和自由基电子的可能位置。描述了烯丙基阴离子和阳离子中协同闭环的选择性。共轭环系统的对称性是根据它们的π电子数量和自旋多重性来预测的。可以预测苯的pi畸变率。乙硼烷中的3c / 2e(-)H桥键是自然产生的,其依据是桥键之间将具有离域相互作用,这与NBO方法的结果一致。使用VIF描述了关键的化学键基序。这些包括2c / 1e(-),2c / 2e(-),2c / 3e(-),3c / 2e(-),3c / 3e(-),3c / 4e(-),4n抗芳烃和4n + 2种芳族键合系统。一些常见的有机官能团表示为VIF图片,由于这些图片可同时解释为单电子密度和哈密顿算子,因此价壳电子对排斥方法被用于理解价态NBO的能量与参考能的关系。 -1/2嗯

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