Sochorová Vokáčová Zuzana, Turel Iztok, Burda Jaroslav V
Department of Chemical Physics and Optics, Faculty of Mathematics and Physics, Charles University, Ke Karlovu 3, 121 16, Prague 2, Czech Republic.
Faculty of Chemistry and Chemical Technology, University of Ljubljana, Večna pot 113, 1000, Ljubljana, Slovenia.
J Mol Model. 2018 Mar 20;24(4):98. doi: 10.1007/s00894-018-3598-7.
Based on experimental work, 12 half-sandwich organoruthenium(II) complexes with p-cymene and various substituted β-diketonates (acac) modified by several functional groups were explored. These complexes were optimized at the B3PW91/6-31 + G(d)/PCM/UFF computational level with the Ru atom described by Stuttgart pseudopotentials. The electron density analysis was performed using the B3LYP/ 6-311++G(2df,2pd)/DPCM/scaled-UAKS model. Electrostatic and averaged local ionization potential were explored and extremes on 0.001 e/a.u. isodensity surfaces discussed. Natural population analysis partial charges and electron densities in bond critical point of the key Ru(II) coordination bonds were determined. There was a clear correlation between the results obtained and experimentally known anticancer descriptors. Graphical abstract Top Average local ionization potential (ALIP) of half-sandwich organoruthenium(II) β-diketonate complex, bottom IC 50 of b-series for ovarian cancer and Ru-P distances (in Å).
基于实验工作,研究了12种具有对异丙基苯和多种被若干官能团修饰的取代β-二酮(乙酰丙酮)的半夹心有机钌(II)配合物。这些配合物在B3PW91/6-31 + G(d)/PCM/UFF计算水平下进行了优化,其中Ru原子由斯图加特赝势描述。使用B3LYP/6-311++G(2df,2pd)/DPCM/缩放-UAKS模型进行了电子密度分析。探讨了静电和平均局部电离势,并讨论了0.001 e/原子单位等密度面上的极值。确定了关键Ru(II)配位键的键临界点处的自然布居分析部分电荷和电子密度。所得结果与实验已知的抗癌描述符之间存在明显的相关性。图形摘要 顶部:半夹心有机钌(II)β-二酮配合物的平均局部电离势(ALIP),底部:b系列对卵巢癌的IC50和Ru-P距离(以埃为单位)。