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Photodissociation dynamics of hydroxybenzoic acids

机译:羟基苯甲酸的光解离动力学

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Aromatic amino acids have large UV absorption cross-sections and low fluorescence quantum yields. Ultrafast internal conversion, which transforms electronic excitation energy to vibrational energy, was assumed to account for the photostability of amino acids. Recent theoretical and experimental investigations suggested that low fluorescence quantum yields of phenol (chromophore of tyrosine) are due to the dissociation from a repulsive excited state. Radicals generated from dissociation may undergo undesired reactions. It contradicts the observed photostability of amino acids. In this work, we explored the photodissociation dynamics of the tyrosine chromophores, 2-, 3- and 4-hydroxybenzoic acid in a molecular beam at 193 nm using multimass ion imaging techniques. We demonstrated that dissociation from the excited state is effectively quenched for the conformers of hydroxybenzoic acids with intramolecular hydrogen bonding. Ab initio calculations show that the excited state and the ground state potential energy surfaces change significantly for the conformers with intramolecular hydrogen bonding. It shows the importance of intramolecular hydrogen bond in the excited state dynamics and provides an alternative molecular mechanism for the photostability of aromatic amino acids upon irradiation of ultraviolet photons.
机译:芳香族氨基酸具有较大的紫外线吸收截面,并且荧光量子产率低。假定将电子激发能转换为振动能的超快内部转换可解释氨基酸的光稳定性。最近的理论和实验研究表明,苯酚(酪氨酸的发色团)的荧光量子产率低是由于从排斥激发态解离而来的。离解产生的自由基可能会发生不希望的反应。它与观察到的氨基酸的光稳定性矛盾。在这项工作中,我们使用多质量离子成像技术探索了193 nm分子束中酪氨酸生色团,2-,3-和4-羟基苯甲酸的光解动力学。我们证明了从激发态的解离可以有效地淬灭具有分子内氢键的羟基苯甲酸构象。从头算计算表明,对于具有分子内氢键的构象异构体,其激发态和基态势能表面发生了显着变化。它显示了分子内氢键在激发态动力学中的重要性,并为紫外线照射后芳香族氨基酸的光稳定性提供了另一种分子机制。

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