Toivonen Teemu L J, Hukka Terttu I, Cramariuc Oana, Rantala Tapio T, Lemmetyinen Helge
Institute of Materials Chemistry, Tampere University of Technology, PO Box 541, 33101 Tampere, Finland.
J Phys Chem A. 2006 Nov 9;110(44):12213-21. doi: 10.1021/jp062156c.
Spectroscopic properties of a ground state nonbonded porphine-buckminsterfullerene (H2P...C60) complex are studied in several different relative orientations of C60 with respect to the porphine plane by using the density functional (DFT) and time-dependent density functional (TDDFT) theories. The geometries and electronic structures of the ground states are optimized with the B3LYP and PBE functionals and a SVP basis set. Excitation energies and oscillator strengths are obtained from the TDDFT calculations. The relative orientation of C60 is found to affect the equilibrium distance between H2P and C60 especially in the case of the PBE functional. The excitation energies of different H2P...C60 complexes are found to be practically the same for the same excitations when the B3LYP functional is used but to differ notably when PBE is used in calculations. Existence of the states related to a photoinduced electron transfer within a porphyrin-fullerene dyad is also studied. All calculations predict a formation of an excited charge-transfer complex state, a locally excited donor (porphine) state, as well as a locally excited acceptor (fullerene) state in the investigated H2P...C60 complexes.
利用密度泛函理论(DFT)和含时密度泛函理论(TDDFT),在C60相对于卟啉平面的几种不同相对取向下,研究了基态非键合卟啉 - 巴基球烯(H2P...C60)配合物的光谱性质。使用B3LYP和PBE泛函以及SVP基组对基态的几何结构和电子结构进行了优化。从TDDFT计算中获得了激发能和振子强度。发现C60的相对取向会影响H2P与C60之间的平衡距离,特别是在使用PBE泛函的情况下。当使用B3LYP泛函时,不同H2P...C60配合物对于相同激发的激发能实际上是相同的,但在计算中使用PBE时则有显著差异。还研究了卟啉 - 富勒烯二元体系中与光诱导电子转移相关的态的存在情况。所有计算均预测在所研究的H2P...C60配合物中会形成激发态电荷转移复合态、局域激发供体(卟啉)态以及局域激发受体(富勒烯)态。