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Getting to guanine: mechanism and dynamics of charge separation and charge recombination in DNA revisited

机译:鸟嘌呤的研究:DNA中电荷分离和电荷重组的机理和动力学

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摘要

The mechanism and dynamics of charge separation and charge recombination in synthetic DNA hairpins possessing a stilbenedicarboxamide linker and a single guanine-cytosine base pair have been reinvestigated. The combination of femtosecond broad-band pump probe spectroscopy, nanosecond transient absorption experiments, and picosecond fluorescence decay measurements permits analysis of the formation and decay of the stilbene anion radical. Reversible hole injection resulting in the formation of the stilbene-adenine contact radical ion pair is found to occur on the picosecond time scale. The mechanism for charge separation across two or more base pairs is revised from single step superexchange to a multi-step process: hole injection followed by hole transport and hole trapping. The mechanism of charge recombination remains assigned to a superexchange process.
机译:对具有二苯乙烯基羧酰胺连接子和单个鸟嘌呤-胞嘧啶碱基对的合成DNA发夹中电荷分离和电荷重组的机理和动力学进行了重新研究。飞秒宽带泵浦探针光谱法,纳秒瞬态吸收实验和皮秒荧光衰减测量的结合,可以分析二苯乙烯阴离子自由基的形成和衰减。发现可逆的空穴注入在皮秒的时间尺度上发生,导致形成二苯乙烯-腺嘌呤接触自由基离子对。将跨越两个或更多碱基对的电荷分离机制从单步超交换修改为多步过程:空穴注入,然后空穴传输和空穴俘获。电荷重组机制仍然分配给超级交换过程。

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