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首页> 外文期刊>Angewandte Chemie >Mapping the Excited-State Potential Energy Surface of a Photomolecular Motor
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Mapping the Excited-State Potential Energy Surface of a Photomolecular Motor

机译:映射光分子电机的激发状态电位能表面

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摘要

A detailed understanding of the operation and efficiency of unidirectional photomolecular rotary motors is essential for their effective exploitation in molecular nanomachines. Unidirectional motion relies on light-driven conversion from a stable (1a) to a metastable (1b) conformation, which then relaxes through a thermally driven helix inversion in the ground state. The excited-state surface has thus far only been experimentally characterised for 1a. Here we probe the metastable, 1b, excited state, utilising ultrafast transient absorption and femtosecond stimulated Raman spectroscopy. These reveal that the dark excited-state intermediate between 1a and 1b has a different lifetime and structure depending on the initial ground-state conformation excited. This suggests that the reaction coordinate connecting 1a to 1b differs to that for the reverse photochemical process. The result is contrasted with earlier calculations.
机译:详细了解单向光分子旋转电动机的操作和效率对于它们在分子纳米载体中的有效剥削至关重要。 单向运动依赖于从稳定(1A)到亚稳态(1B)构象的光驱动转换,然后通过在地状态下通过热驱动的螺旋反转来放松。 兴奋状态表面仅次于实验表征1A。 在这里,我们探讨了亚稳态,1B,激发状态,利用超快瞬态吸收和飞秒刺激的拉曼光谱。 这些揭示了1a和1b之间的黑暗激发态中间体具有不同的寿命和结构,这取决于激发的初始地态构象。 这表明将1A至1B连接的反应坐标与反向光化学过程的反应坐标不同。 结果与早期计算形成对比。

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