Tripathy Umakanta, Kowalska Dorota, Liu Xia, Velate Suresh, Steer Ronald P
Department of Chemistry, University of Saskatchewan, 110 Science Place Saskatoon, SK Canada S7N 5C9.
J Phys Chem A. 2008 Jul 3;112(26):5824-33. doi: 10.1021/jp801395h. Epub 2008 Jun 7.
The photophysical behavior of three Soret-excited diamagnetic meso-substituted tetraphenylmetalloporphyrins, MgTPP, ZnTPP, and CdTPP, have been examined in a wide variety of solvents using both steady-state and femtosecond fluorescence upconversion methods. The S 2 population of MgTPP decays to S 1 on the time scale of a few picoseconds with unit S 2-S 1 internal conversion efficiency, and the decay rates conform to the weak coupling case of radiationless transition theory. The energy gap law parameters characterizing the coupling of the S 2 and S 1 states of MgTPP have been obtained. The most important accepting vibrational modes in the S 1 state are multiple in-plane C-C and C-N stretches in the 1200-1500 cm (-1) range. Net S 2-S 1 decay is the dominant decay path for ZnTPP and CdTPP as well, but the process occurs at rates that exceed (in the case of CdTPP, they vastly exceed) those predicted by weak interstate coupling. Alternate mechanisms for the radiationless decay of the S 2 states of ZnTPP and CdTPP have been explored. Large spin-orbit coupling constants and the presence of multiple, near-equiergic triplet states suggest that S 2-T n intersystem crossing might occur at rates competitive with internal conversion. However, the measured efficiencies of S 2-S 1 internal conversion show that, at most, only a few percent of the S 2 population of ZnTPP and no more than about 30% of the S 2 population of CdTPP can decay by a "dark" path such as intersystem crossing.
使用稳态和飞秒荧光上转换方法,在多种溶剂中研究了三种索雷特激发的抗磁性中位取代四苯基金属卟啉MgTPP、ZnTPP和CdTPP的光物理行为。MgTPP的S₂态在几皮秒的时间尺度上以单位S₂ - S₁内转换效率衰减至S₁,且衰减速率符合无辐射跃迁理论的弱耦合情况。已获得表征MgTPP的S₂和S₁态耦合的能隙定律参数。S₁态中最重要的接受振动模式是1200 - 1500 cm⁻¹范围内的多个面内C - C和C - N伸缩振动。净S₂ - S₁衰减也是ZnTPP和CdTPP的主要衰减路径,但该过程的发生速率超过了(对于CdTPP,远远超过)弱态间耦合预测的速率。已探索了ZnTPP和CdTPP的S₂态无辐射衰减的替代机制。大的自旋 - 轨道耦合常数以及多个近等能三重态的存在表明,S₂ - Tₙ系间窜越可能以与内转换竞争的速率发生。然而,测量的S₂ - S₁内转换效率表明,最多只有百分之几的ZnTPP的S₂态以及不超过约30%的CdTPP的S₂态可以通过诸如系间窜越这样的“暗”路径衰减。