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Rotational and vibrational dynamics in the excited electronic state of deprotonated and protonated fluorescein studied by time-resolved photofragmentation in an ion trap

机译:通过离子阱中的时间分辨光碎裂研究了去质子化和质子化荧光素在激发电子状态下的旋转和振动动力学

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摘要

Excited state dynamics of deprotonated and protonated fluorescein were investigated by polarization dependent femtosecond time-resolved pump-probe photofragmentation in a 3D ion trap. Transients of deprotonated fluorescein exhibit vibrational wavepacket dynamics with weak polarization dependence. Transients of protonated fluorescein show only effects of molecular alignment and rotational dephasing. The time resolved rotational anisotropy of protonated fluorescein is simulated by the calculated orientational correlation function. The observed differences between deprotonated and protonated fluorescein are ascribed to their different higher lying electronically excited states and corresponding structures. This is partially supported by time-dependent density functional theory calculations of the excited state structures.
机译:通过偏振相关的飞秒时间分辨泵浦探针光碎裂在3D离子阱中研究了去质子化和质子化荧光素的激发态动力学。去质子化的荧光素的瞬态表现出具有弱偏振依赖性的振动波包动力学。质子化荧光素的瞬变仅显示分子排列和旋转移相的作用。通过计算的取向相关函数,模拟了质子化荧光素的时间分辨旋转各向异性。去质子化和质子化荧光素之间观察到的差异归因于它们不同的较高电子激发态和相应的结构。激发态结构的时变密度泛函理论计算部分地支持了这一点。

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