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Some peculiarities of electronic and vibronic excitations transfer in organic media and hybrid nanosystems

机译:有机培养基和杂交纳米系统中电子和振动激发转移的一些特殊性

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摘要

The peculiarities of electronic and vibronic excitations transfer processes in polymers and hybrid nanosystems were examined. It is shown, that at distances less 15-25 angstrom the probability of electronic singlet and triplet excitation energy transfer is rather high and is close to unity. For the singlet-singlet energy transfer between neighbor pi-electron-containing macromolecular cells the phenomenon is explained by essential contribution of an exchange mechanism. A similar effect for hybrid functional nanosystems (that were designed for photodynamic therapy) was observed. The manifestations of vibronic excitation transfer along polymer chain were also studied. The critical distance for vibronic excitation transfer jump was estimated as 3-6 angstrom.
机译:检查了聚合物和杂交纳米系统中的电子和振动激发转移过程的特性。 结果显示,在距离较少的距离15-25埃时,电子单线件和三联励磁能量传递的概率相当高,并且接近统一。 对于邻近含PI-电子的大分子细胞之间的单线态能量传递,通过交换机制的基本贡献来解释现象。 观察到杂化官能纳米系统(设计用于光动力治疗)的类似效果。 还研究了沿聚合物链的振动激发转移的表现。 振动激励转移跳跃的临界距离估计为3-6埃。

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