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首页> 外文期刊>Optics and Spectroscopy >Conformational Dynamics and Spin-Orbit Interactions in a Series of Sterically Hindered Porphyrins in the Lowest Triplet State
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Conformational Dynamics and Spin-Orbit Interactions in a Series of Sterically Hindered Porphyrins in the Lowest Triplet State

机译:最低三重态下一系列受阻卟啉的构象动力学和自旋轨道相互作用

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We have studied the nature and unusual photophysical properties of triplet states of a series of sterically hindered porphyrins (meso-phenyl-substituted derivatives of octamethylporphyrin (PS-OMP)) using quantum-chemical calculations of the parameters that determine the probability of deactivation of the T_1 state and modeling the T-T absorption spectra. We show that a decrease in the lifetime of the T_1 state of PS-OMP is related with the enhancement of the channel of nonradiative deactivation (T_1 → S_0), which occurs (i) due to the conformational lability in the T_1 state, as a result of which the energy gap T_1-S_0 considerably decreases, and (ii) because of an increase in the matrix element of the spin-orbit interaction due to a change in the hybridization of atoms of the macrocycle as a consequence of its nonplanar distortion. The value of the vibronically induced matrix element of the spin-orbit interaction between the S_0 and T_1 states of PS-OMP depends weakly on the type of the conformation and the value and the character of distortion of the porphyrin macrocycle. The conformational lability of PS-OMP clearly manifests itself in the spectra and kinetics of the T-T absorption of these compounds at room temperature and determines the nonmonoexponential character of the phosphorescence decay kinetics in frozen matrices. Using porphin as an example, we have shown that nonplanar distortions of the macrocycle facilitate a decrease in the phosphorescence rate constant at 77 K, which is caused, on the one hand, by an increase in the energy gaps T_1-S_n and S_0-T_n and, on the other hand, by an increase in the wavelength of the transition T_1 → S_0.
机译:我们已经使用参数的量子化学计算方法研究了一系列空间受阻的卟啉(八甲基卟啉的内苯基取代衍生物(PS-OMP))的三重态的性质和异常的光物理性质。 T_1状态并模拟TT吸收光谱。我们显示PS-OMP的T_1状态寿命的减少与非辐射失活通道(T_1→S_0)的增强有关,这是由于(i)由于T_1状态的构象不稳定性,如其结果是,能隙T_1-S_0显着减小,并且(ii)由于自旋轨道相互作用的矩阵元素由于其非平面畸变而导致的大环原子杂化变化而增加。 PS-OMP的S_0和T_1状态之间自旋轨道相互作用的由玻璃纤维诱导的基质元素的值在某种程度上取决于构象的类型以及卟啉大环的值和畸变特性。 PS-OMP的构象不稳定性在室温下这些化合物的T-T吸收光谱和动力学中清楚地表明了自己,并确定了冷冻基质中磷光衰减动力学的非单指数特征。以卟啉为例,我们已经表明,大环的非平面畸变有助于降低77 K处的磷光速率常数,这一方面是由于能隙T_1-S_n和S_0-T_n的增加引起的另一方面,通过增加跃迁T_1→S_0的波长。

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