The Key Laboratory for Surface Engineering and Remanufacturing in Shaanxi Province, School of Chemical Engineering, Xi'an University, Xi'an 710065, Shaanxi, PR China.
Spectrochim Acta A Mol Biomol Spectrosc. 2017 Oct 5;185:149-154. doi: 10.1016/j.saa.2017.05.047. Epub 2017 May 23.
In this work, we reported the geometrical structures, electronic and spectral properties of the carborane-containing BODIPYs complexes using the density functional theory calculations. In two structures, the calculated main bond lengths and bond angels of structural framework are consistent with X-ray experiment, and the two BODIPYs complexes are thermodynamically and kinetically stable. The strongest DOS band is mainly dominated by the BB and BH σ-bonds of carborane fragment, whereas the π-type MOs on the pyrromethene fragment contribute to the high-energy DOS bands. Analysis of the AdNDP chemical bonding indicates that the carborane cage can be stabilized by eleven delocalized 3c2e and two delocalized 4c2e σ-bonds, while the pyrromethene fragment corresponds to five delocalized 3c2e π-bonds. In addition, the main characteristic peaks of the two simulated IR spectra for the BODIPYs complexes are properly assigned. Hopefully, all these results will be helpful for understanding the electronic structures, and further stimulate the study on the biological and medical applications.
在这项工作中,我们使用密度泛函理论计算报道了含硼烷的 BODIPYs 配合物的几何结构、电子和光谱性质。在两个结构中,计算得到的结构框架的主要键长和键角与 X 射线实验一致,并且这两个 BODIPYs 配合物在热力学和动力学上都是稳定的。最强的 DOS 带主要由硼烷片段的 BB 和 BH σ 键主导,而吡咯并[3,4-b]吡咯片段的 π 型 MO 有助于高能 DOS 带。AdNDP 化学键分析表明,硼烷笼可以通过十一个离域的 3c2e 和两个离域的 4c2e σ 键稳定,而吡咯并[3,4-b]吡咯片段对应于五个离域的 3c2e π 键。此外,两个模拟 BODIPYs 配合物的 IR 光谱的主要特征峰得到了适当的归属。希望所有这些结果都有助于理解电子结构,并进一步激发对生物和医学应用的研究。