Dipartimento di Chimica and Centro di Calcolo ad Alte Prestazioni per Elaborazioni Parallele e Distribuite, Università della Calabria, I-87030 Arcavacata di Rende, Italy.
J Phys Chem B. 2012 Sep 6;116(35):10816-23. doi: 10.1021/jp3068359. Epub 2012 Aug 22.
The molecular structures and absorption electronic spectra of two novel phototoxic pentapyrrolic expanded porphyrins (a isopentaphyrin derivative and its lutetium complex) have been studied at the density functional level and its time-dependent extension (TDDFT). The geometries were optimized with three different exchange-correlation functionals (PBE0, B3LYP, and ωB97XD) and the SV(P) basis set plus the pseudopotential method for the complex. With respect to the porphyrin, the structure of [1.1.1.1.1]-pentaphyrin and its lutetium complex are predicted much distorted due to the lack of conjugation. The lowest excitation energy band (experimental at 814 nm) for the free-base isopentaphyrin is well predicted by the ωB97XD at 772 nm. The possible photodynamic reaction mechanisms (types I and II) were studied through the calculation of the electron affinity and ionization potentials in solvent, using the COSMO model.
两种新型光毒性五吡咯啉扩展卟啉(一个异戊四吡咯啉衍生物及其镥配合物)的分子结构和吸收电子光谱已经在密度泛函水平及其时间相关的扩展(TDDFT)进行了研究。采用三种不同的交换相关泛函(PBE0、B3LYP 和 ωB97XD)和 SV(P)基组加赝势方法对配合物进行了优化。对于卟啉,由于缺乏共轭,[1.1.1.1.1]-五吡咯啉及其镥配合物的结构预计会发生很大的变形。自由碱基异戊四吡咯啉的最低激发能带(实验在 814nm)由 ωB97XD 在 772nm 处很好地预测。通过使用 COSMO 模型计算溶剂中的电子亲和能和离子化势,研究了可能的光动力反应机制(I 型和 II 型)。