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Vibrational Promotion of Electron Transfer

机译:振动促进电子转移

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By using laser methods to prepare specific quantum states of gas-phase nitric oxide molecules, we examined the role of vibrational motion in electron transfer to a molecule from a metal surface free from the complicating influence of solvation effects. The signature of the electron transfer process is a highly efficient multiquantum vibrational relaxation event, where the nitrogen oxide loses hundreds of kilojoules per mole of energy on a subpicosecond time scale. These results cannot be explained simply on the basis of Franck-Condon factors. The large-amplitude vibrational motion associated with molecules in high vibrational states strongly modulates the energetic driving force of the electron transfer reaction. These results show the importance of molecular vibration in promoting electron transfer reactions, a class of chemistry important to molecular electronics devices, solar energy conversion, and many biological processes.
机译:通过使用激光方法制备气相一氧化氮分子的特定量子态,我们研究了振动运动在电子从金属表面转移到分子中而不受溶剂化作用复杂影响的作用。电子转移过程的标志是高效的多量子振动弛豫事件,其中氮氧化物在亚皮秒级的时间内每摩尔能量损失数百千焦耳。这些结果不能简单地基于弗兰克-康登因子来解释。与处于高振动状态的分子相关的大振幅振动运动强烈地调节了电子转移反应的能量驱动力。这些结果表明了分子振动在促进电子转移反应,一类对分子电子设备,太阳能转化和许多生物过程很重要的化学反应中的重要性。

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