首页> 外文期刊>Journal of the American Chemical Society >Role Of Solvent, Ph, And Molecular Size In Excited-statedeactivation Of Key Eumelanin Building Blocks: Implicationsrnfor Melanin Pigment Photostability
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Role Of Solvent, Ph, And Molecular Size In Excited-statedeactivation Of Key Eumelanin Building Blocks: Implicationsrnfor Melanin Pigment Photostability

机译:溶剂,pH和分子大小在关键的Eumelanin构件的激发态失活中的作用:对黑色素颜料光稳定性的影响

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Ultrafast time-resolved fluorescence spectroscopy has been used to investigate the excited-state dynamics of the basic eumelanin building block 5,6-dihydroxyindole-2-carboxylic acid (DHICA), its acetylated, methylated, and carboxylic ester derivatives, and two oligomers, a dimer and a trimer in the O-acetylated forms. The results show that (1) excited-state decays are faster for the trimer relative to the monomer; (2) for parent DHICA, excited-state lifetimes are much shorter in aqueous acidic medium (380 ps) as compared to organic solvent (acetonitrile, 2.6 ns); and (3) variation of fluorescence spectra and excited-state dynamics can be understood as a result of excited-state intramolecular proton transfer (ESIPT). The dependence on the DHICA oligomer size of the excited-state deactivation and its ESIPT mechanism provides important insight into the photostability and the photoprotective function of eumelanin. Mechanistic analogies with the corresponding processes in DNA and other biomolecules are recognized.
机译:超快速时间分辨荧光光谱法已用于研究基本的Eumelanin结构单元5,6-二羟基吲哚-2-羧酸(DHICA),其乙酰化,甲基化和羧酸酯衍生物以及两种低聚物的激发态动力学, O-乙酰化形式的二聚体和三聚体。结果表明:(1)三聚体相对于单体的激发态衰减更快; (2)对于母体DHICA,与有机溶剂(乙腈,2.6 ns)相比,在酸性水溶液中(380 ps)的激发态寿命要短得多。 (3)荧光光谱和激发态动力学的变化可以理解为激发态分子内质子转移(ESIPT)的结果。依赖于DHICA低聚物大小的激发态失活及其ESIPT机制,为深入了解Eumelanin的光稳定性和光保护功能提供了重要信息。与DNA和其他生物分子中相应过程的机理相似。

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