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Photodetachment of deprotonated aromatic amino acids: stability of the dehydrogenated radical depends on the deprotonation site

机译:反质芳族氨基酸的光透射:脱氢基团的稳定性取决于去质子化位点

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摘要

While aromatic amino acids in their deprotonated form have been well characterized by IR and photoelectron spectroscopies, no information is available on the neutral dehydrogenated radicals and, in particular, on their stability when the deprotonation site is changed. This is investigated by observing the neutral fragment issued from either simple photodetachment or dissociative photodetachment of the deprotonated aromatic amino acids phenylalanine, tyrosine, and tryptophan. We show that the dehydrogenated radicals of aromatic amino acids produced upon photodetachment of molecules deprotonated on the carbonyl group dissociate without barrier, leading to the formation of CO2 and a radical amine. However, when the system is deprotonated on functional groups located on the chromophore, the radicals produced by photodetachment are stable, indicating the important photostabilizing role played by functional groups.
机译:虽然在其去质子化形式中的芳族氨基酸已经很好地表征了IR和光电子谱,但在中性脱氢的基团上没有任何信息,并且特别是当反质抑制位点改变时它们的稳定性。 通过观察从无到的光散热氨基酸苯丙氨酸,酪氨酸和色氨酸的简单光散热或分离光滴加的中性片段来研究。 我们表明,在羰基对羰基对羰基脱质子的分子的光致沉积的芳族氨基酸的脱氢基团在没有屏障的情况下解散,导致CO 2的形成和自由基胺。 然而,当系统对位于发色团上的官能团上脱质时,通过光致沉积产生的基团是稳定的,表明官能团发挥着重要的光致作用。

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