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Effect of Extra Liganding on Spectral and Kinetic Characteristics and on Quenching of Excited States of Multiporphyrin Complexes by Molecular Oxygen

机译:额外配硫对分子氧的多卟啉配合物的光谱和动力学特性以及激发态猝灭的影响

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Based on studies of spectral and kinetic parameters of dimers of Zn porphyrins and of multipor-phyrin self-assembling complexes formed on their basis, we find that extra liganding of dimers by pyridine inappreciably lowers the energy of the triplet level E( T_(1)). We show that, in this case, the nonradiative deactivation T_(1) -> S_(0) of the electronic excitation energy of dimers Zn porphyrins increases not only due to increasing Franck-Condon factor. We discuss mechanisms of the quenching action of an extra ligand related to an accepting role played by high-frequency overtones of vibrations of extra ligand molecules, to an enhancement of the spin-orbit interaction due to energy lowering of (sigma)(pi)~(*) states, and to out-of-plane distortion of dimers caused by the displacement of the Zn~(2+) ion out of the plane of the tetrapyrrole macrocycle. Quenching of triplet states of extra liganded dimers of Zn porphyrins by molecular oxygen in liquid solutions at 295 K depends on the character of donor-acceptor interactions with pyridine and rigidity of a linking molecular fragment. We find that the rate constants of oxygen quenching of the excited electronic states S_(1) and T_(1) of multiporphyrin complexes depend on their structure and composition, as well as steric hindrances, created by dimers (screening effects) for contact interactions of a pi-conjugated system of the free base (extra ligand) with molecular oxygen. Screening effects of extra ligands by dimer molecules of Zn porphyrins, which reduce the oxygen quenching rate constants k_(S) and k_(T), are found to barely affect the singlet-oxygen generation quantum yield (gamma)_(DELTA).
机译:基于锌卟啉二聚体和在其基础上形成的多卟啉自组装复合物的光谱和动力学参数研究,我们发现吡啶对二聚体的额外配体不会显着降低三重态E的能量(T_(1) )。我们表明,在这种情况下,二聚体卟啉锌电子激发能的非辐射失活T_(1)-> S_(0)不仅是由于增加了弗兰克-康登因子而增加。我们讨论了额外配体的淬灭作用的机制,该机制与额外配体分子的振动的高频泛音所起的接受作用有关,由于σ(π)(pi)〜的能量降低而增强了自旋轨道相互作用。 (*)状态,以及由于Zn〜(2+)离子移出四吡咯大环平面引起的二聚体的面外畸变。锌氧卟啉的额外配体二聚体的三重态在295 K的液态氧中被分子氧淬灭取决于供体-受体与吡啶相互作用的特性和连接分子片段的刚性。我们发现,多卟啉配合物的激发电子态S_(1)和T_(1)的氧猝灭速率常数取决于它们的结构和组成,以及由二聚体(屏蔽效应)产生的分子接触相互作用产生的空间位阻。游离碱(额外配体)与分子氧的pi共轭体系。发现锌卟啉的二聚体分子对额外配体的筛选作用降低了氧猝灭速率常数k_(S)和k_(T),几乎没有影响单线态氧生成量子产率γ_Δ。

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