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首页> 外文期刊>Physical chemistry chemical physics: PCCP >On the intrinsic photophysics of indigo: a time-resolved photoelectron spectroscopy study of the indigo carmine dianion
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On the intrinsic photophysics of indigo: a time-resolved photoelectron spectroscopy study of the indigo carmine dianion

机译:关于靛蓝的内在光物理:靛蓝胭脂红二价阴离子的时间分辨光电子能谱研究

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The intrinsic photophysics of indigo has been studied using gas-phase time-resolved photoelectron imaging of the indigo carmine dianion (InC~(2-) ). The action spectrum reveals that the gas-phase absorption spectrum arising from the S1 ← S0 transition in InC~(2-) has a similar solvent shift to that of neutral indigo. Femtosecond spectroscopy shows that the S1 state decays on a 1.4 ps timescale. Through isotopic substitution, the primary mechanism on the S1 excited state can be assigned to an intra-molecular proton transfer, which is the same as that which has been observed in solution. However, the excited state lifetime is significantly shorter in vacuum. These similarities and differences are discussed in terms of recent theoretical investigations of the S1 excited state of indigo.
机译:利用靛蓝胭脂红二价阴离子(InC〜(2-))的气相时间分辨光电子成像技术研究了靛蓝的内在光物理性质。作用谱表明,InC〜(2-)中S1←S0跃迁产生的气相吸收谱具有与中性靛蓝相似的溶剂位移。飞秒光谱显示,S1状态在1.4 ps的时间尺度上衰减。通过同位素取代,S1激发态的主要机理可以归因于分子内质子转移,这与溶液中观察到的相同。但是,在真空中激发态寿命显着缩短。这些相似性和差异是根据对靛蓝的S1激发态的最新理论研究讨论的。

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