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Polydopamine and eumelanin molecular structures investigated with ab initio calculations

机译:从头算计算研究聚多巴胺和双聚乙二醇的分子结构

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摘要

A set of computational methods that contains a brute-force algorithmic generation of chemical isomers, molecular dynamics (MD) simulations, and density functional theory (DFT) calculations is reported and applied to investigate nearly 3000 probable molecular structures of polydopamine (PDA) and eumelanin. All probable early-polymerized 5,6-dihydroxyindole (DHI) oligomers, ranging from dimers to tetramers, have been systematically analyzed to find the most stable geometry connections as well as to propose a set of molecular models that represents the chemically diverse nature of PDA and eumelanin. Our results indicate that more planar oligomers have a tendency to be more stable. This finding is in good agreement with recent experimental observations, which suggested that PDA and eumelanin are composed of nearly planar oligomers that appear to be stacked together via π–π interactions to form graphite-like layered aggregates. We also show that there is a group of tetramers notably more stable than the others, implying that even though there is an inherent chemical diversity in PDA and eumelanin, the molecular structures of the majority of the species are quite repetitive. Our results also suggest that larger oligomers are less likely to form. This observation is also consistent with experimental measurements, supporting the existence of small oligomers instead of large polymers as main components of PDA and eumelanin. In summary, this work brings an insight into the controversial structure of PDA and eumelanin, explaining some of the most important structural features, and providing a set of molecular models for more accurate modeling of eumelanin-like materials.
机译:报告了一套计算方法,其中包括化学异构体的蛮力算法生成,分子动力学(MD)模拟和密度泛函理论(DFT)计算,并将其用于研究将近3000种聚多巴胺(PDA)和Eumelanin的可能分子结构。从二聚体到四聚体,对所有可能的早期聚合的5,6-二羟基吲哚(DHI)低聚物进行了系统分析,以找到最稳定的几何连接,并提出了一组代表PDA化学性质的分子模型和eumelanin。我们的结果表明,更多的平面低聚物倾向于更稳定。这一发现与最近的实验观察结果非常吻合,后者表明PDA和Eumelanin由近乎平面的低聚物组成,它们似乎通过π-π相互作用堆叠在一起,形成了类似石墨的分层聚集体。我们还显示,有一组四聚体比其他四聚体明显更稳定,这意味着即使PDA和Eumelanin具有固有的化学多样性,大多数菌种的分子结构也是相当重复的。我们的结果还表明,较大的低聚物不太可能形成。该观察结果也与实验测量结果一致,支持存在小的低聚物而不是大的聚合物作为PDA和Eumelanin的主要成分。总而言之,这项工作使人们对PDA和Eumelanin的争议结构有了深刻的了解,解释了一些最重要的结构特征,并提供了一套分子模型来更精确地建模Eumelanin类材料。

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