Institute of Functional Material Chemistry, Faculty of Chemistry, Northeast Normal University, Changchun, China.
J Mol Model. 2013 Aug;19(8):3437-46. doi: 10.1007/s00894-013-1845-5. Epub 2013 May 25.
The geometric and electronic structures, absorption spectra, transporting properties, chemical reactivity indices and electrostatic potentials of the planar three-coordinate organoboron compounds 1-2 and twisted reference compound Mes(3)B, have been investigated by employing density functional theory (DFT) and conceptual DFT methods to shed light on the planarity effects on the photophysical properties and the chemical reactivity. The results show that the planar compounds 1-2 exhibit significantly lower HOMO level than Mes(3)B, owing to the stronger electronic induction effect of boron centers. This feature conspicuously induces a blue shifted absorption for 1, although 1 seemingly possesses more extended conjugation framework than Mes(3)B. Importantly, the reactivity strength of the boron atoms in 1-2 is much lower than that in Mes(3)B, despite the fact that the tri-coordinate boron centers of 1-2 are completely naked. The interesting and abnormal phenomenon is caused by the strong p-π electronic interactions, that is, the empty p-orbital of boron center is partly filled by π-electron of the neighbor carbon atoms in 1-2, which are confirmed by the analysis of Laplacian of the electron density and natural bond orbitals. Furthermore, the negative electrostatic potentials of the boron centers in 1-2 also interpret that they are not the most preferred sites for incoming nucleophiles. Moreover, it is also found that the planar compounds 1-2 can act as promising electron transporting materials since the internal reorganization energies for electron are really small.
采用密度泛函理论(DFT)和概念 DFT 方法研究了平面三配位有机硼化合物 1-2 和扭曲参比化合物 Mes(3)B 的几何和电子结构、吸收光谱、输运性质、化学反应性指数和静电势,以阐明平面性对光物理性质和化学反应性的影响。结果表明,由于硼中心的电子诱导效应更强,平面化合物 1-2 的 HOMO 能级明显低于 Mes(3)B。这一特征显著导致 1 发生蓝移吸收,尽管 1 似乎具有比 Mes(3)B 更扩展的共轭骨架。重要的是,尽管 1-2 的三配位硼中心完全裸露,但硼原子的反应强度远低于 Mes(3)B。有趣且异常的现象是由强 p-π 电子相互作用引起的,即硼中心的空 p 轨道部分被 1-2 中相邻碳原子的π 电子填充,这通过电子密度拉普拉斯分析和自然键轨道得到证实。此外,1-2 中硼中心的负静电势也表明它们不是最易受亲核试剂攻击的位置。此外,还发现平面化合物 1-2 可以作为有前途的电子传输材料,因为电子的内部重组能确实很小。