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首页> 外文期刊>International Journal of Quantum Chemistry >Stress tensor eigenvector following with next-generation quantum theory of atoms in molecules
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Stress tensor eigenvector following with next-generation quantum theory of atoms in molecules

机译:应力张量特征向量跟随分子中的下一代量子原子理论

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The eigenvectors of the electronic stress tensor have been identified as useful for the prediction of chemical reactivity because they determine the most preferred directions to move the bonds. A new 3-D vector based interpretation of the chemical bond that we refer to as the bond-path framework set B provides a version of the quantum theory of atoms in molecules (QTAIM) beyond the minimum definition for bonding that is particularly suitable for understanding changes in molecular electronic structure that occur during reactions. We demonstrate that the most preferred direction for bond motion using the stress tensor corresponds to the most compressible direction and not to the least compressible direction as previously reported. We show the necessity for a directional approach constructed using the eigenvectors along the entire bond-length and demonstrate the insufficiency of scalar measures for capturing the nature of the stress tensor within the QTAIM partitioning.
机译:电子应力张量的特征向量已被识别为预测化学反应性,因为它们确定了移动键的最优选方向。 基于新的3-D向量的化学键解释,即键盘路径框架集合B提供了分子(Qtaim)中的量子原子的量子理论,超出了特别适合理解的粘合的最小定义 反应期间发生的分子电子结构的变化。 我们证明使用应力张量的键合运动的最优选方向对应于最可压缩方向,而不是预先报道的最小可压缩方向。 我们展示了使用特征向量构造的定向方法的必要性,沿着整个键合长度构成,并展示了标量措施,以捕获Q值分区内的应力张量的性质。

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