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首页> 外文期刊>The Journal of Chemical Physics >Rotationally resolved electronic spectroscopy of 5-methoxyindole
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Rotationally resolved electronic spectroscopy of 5-methoxyindole

机译:5-甲氧基吲哚的旋转分辨电子光谱

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Rotationally resolved electronic spectra of the vibrationless origin and of eight vibronic bands of 5-methoxyindole (5MOI) have been measured and analyzed using an evolutionary strategy approach. The experimental results are compared to the results of ab initio calculations. All vibronic bands can be explained by absorption of a single conformer, which unambiguously has been shown to be the anti-conformer from its rotational constants and excitation energy. For both anti- and syn-conformers, a ~1L _a/~1L_b gap larger than 4000 cm~(-1) is calculated, making the vibronic coupling between both states very small, thereby explaining why the spectrum of 5MOI is very different from that of the parent molecule, indole.
机译:使用进化策略方法测量并分析了无振动起源和八个甲氧基吲哚(5MOI)八个振动带的旋转分辨电子光谱。将实验结果与从头算的结果进行比较。所有的振动带都可以通过吸收一个单一的构象异构体来解释,从其旋转常数和激发能来看,它已经明确地显示为反构象异构体。对于反规和顺构异构体,都计算出大于4000 cm〜(-1)的〜1L _a /〜1L_b间隙,这使得两种状态之间的振动耦合非常小,从而解释了为什么5MOI的光谱与母体分子吲哚。

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