College of Chemistry and Materials Science, Huaibei Normal University, Huaibei 235000, China.
Dalton Trans. 2013 Feb 21;42(7):2463-8. doi: 10.1039/c2dt31998e. Epub 2012 Dec 3.
Theoretical studies on the DNA-photocleavage efficiencies of Ru(II) polypyridyl complexes 1-4 have been carried out using density functional theory (DFT). First, an evaluation of the computational accuracy of the redox potentials for Ru(bpy)(3) in the ground state and the excited state was tested by different computational methods. Secondly, the redox potentials of complexes 1-4 in the excited state were accurately computed. Finally, the trend in the DNA-photocleavage efficiencies (φ) of complexes 1-4, i.e., φ(4) > φ(3) > φ(2) > φ(1), were reasonably explained by the excited-state reduction potentials and the electron-transfer activation energies. In particular, the DNA-photocleavage efficiencies of two new Ru(II) complexes 3 and 4 were predicted.
使用密度泛函理论(DFT)对 Ru(II) 多吡啶配合物 1-4 的 DNA 光裂解效率进行了理论研究。首先,通过不同的计算方法评估了基态和激发态中 Ru(bpy)(3) 的氧化还原电位的计算精度。其次,准确计算了配合物 1-4 在激发态下的氧化还原电位。最后,通过激发态还原电位和电子转移活化能合理地解释了配合物 1-4 的 DNA 光裂解效率(φ)的趋势,即 φ(4) > φ(3) > φ(2) > φ(1)。特别地,预测了两个新的 Ru(II) 配合物 3 和 4 的 DNA 光裂解效率。