首页> 外文期刊>Chemistry: A European journal >Ultrafast Internal Conversion in a Model Anthocyanin-Polyphenol Complex: Implications for the Biological Role of Anthocyanins in Vegetative Tissues of Plants
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Ultrafast Internal Conversion in a Model Anthocyanin-Polyphenol Complex: Implications for the Biological Role of Anthocyanins in Vegetative Tissues of Plants

机译:在模型花青素-多酚复合物中的超快内部转化:对植物的植物组织中的花青素的生物学作用的影响。

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摘要

The red flavylium cations of anthocyanins form ground-state charge-transfer complexes with several naturally occurring electron-donor copigments, such as hydroxylated flavones and hydroxycinnamic or benzoic acids. Excitation of the 7-methoxy-4-methyl-flavylium-protocatechuic acid complex results in ultrafast (240 fs) internal conversion to the ground state of the complex by way of a low-lying charge-transfer state. Thus, both un-complexed anthocyanins, whose excited state decays by fast (5-20ps) excited-state proton transfer, and anthocyanin-copigment complexes have highly efficient mechanisms of deactivation that are consistent with the proposed protective role of anthocyanins against excess solar radiation in the vegetative tissues of plants.
机译:花青素的红色黄酮阳离子与几种天然存在的电子供体色素形成基态电荷转移络合物,例如羟基化的黄酮和羟基肉桂酸或苯甲酸。激发7-甲氧基-4-甲基-黄酮-原儿茶酸复合物可通过低电荷转移状态将复合物基态超快(240 fs)内部转化。因此,未复合的花青素(其激发态会因快速的(5-20​​ps)激发态质子转移而衰减)和花青素-色素复合物均具有高效的失活机制,这与拟议的花青素对过量太阳辐射的保护作用相一致。在植物的营养组织中。

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