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Bimolecular photoinduced electron transfer in non-polar solvents beyond the diffusion limit

机译:非极性溶剂中的双分子光导电超出扩散极限

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Electron transfer (ET) quenching dynamics in non-polar solvents are investigated using ultrafast spectroscopy with a series of six fluorophore/quencher pairs, covering a driving force range of more than 1.3 eV. The intrinsic ET rate constants, k(0), deduced from the quenching dynamics in the static regime, are of the order of 10(12)-10(13) M-1 s(-1), i.e., at least as large as in acetonitrile, and do not exhibit any marked dependence on the driving force. A combination of transient electronic and vibrational absorption spectroscopy measurements reveals that the primary product of static quenching is a strongly coupled exciplex that decays within a few picoseconds. More weakly coupled exciplexes with a longer lifetime are generated subsequently, during the dynamic, diffusion-controlled, stage of the quenching. The results suggest that static ET quenching in non-polar solvents should be viewed as an internal conversion from a locally excited state to a charge-transfer state of a supermolecule rather than as a non-adiabatic ET process.
机译:使用超自速度光谱学用具有一系列六个荧光团/猝灭剂对的超极性溶剂中的电子转移(ET)淬火动力学,覆盖大于1.3eV的驱动力范围。从静电状态下淬火动态推导的内在ET速率常数k(0)是10(12)-10(13)m-1 s(-1)的量级,即至少大如在乙腈中,并且没有对驱动力表现出任何明显的依赖性。瞬态电子和振动吸收光谱测量的组合揭示了静态淬火的初级产物是一种强耦合的Exciplex,其在几个皮秒内衰减。随后在动态,扩散控制,淬火的阶段,随后产生更弱的耦合具有较长寿命的激素。结果表明,非极性溶剂中的静态ET淬火应被视为从局部激发状态到超分子的电荷转移状态而不是作为非绝热ET过程的内部转化。

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