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Polarization influences the evolution of nucleobase-graphene interactions

机译:极化影响的演变nucleobase-graphene交互

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In recent years, graphene has attracted attention from researchers as an atomistically thin solid state material for the study on the self-assembly of nucleobases. Non-covalent interactions between nucleobases and graphene sheets play a fundamental role in understanding the self-assembly of nucleobases on the graphene sheet. A fundamental understanding of the effect of molecular polarizability on these non-covalent interactions between the nucleobases and the underlying graphene sheet is absent in the literature. In this paper, we present the results from polarizable molecular dynamics simulation studies to understand the effect of polarization on the strength of non-covalent interactions. To this end, we report the development of Drude parameters for describing the polarizable graphene sheet. The developed parameters were used to study the self-aggregation phenomenon of nucleobases on a graphene support. We observe a significant change in the interaction patterns upon the inclusion of polarization into the system, with polarizable simulations yielding results that closely resemble the experimental studies. Two of the key observations were the probability of the formation of stacks in guanine-rich systems, and the spontaneous formation of H-bonded structures over the graphene sheet, which allude to the importance of the DNA sequence and composition. Both these effects were not observed in the additive simulations. The present study sheds light on the effect of polarization on the adsorption of DNA nucleobases on a graphene sheet, but the methodology can be extended to include a variety of small molecules and complete DNA strands.
机译:近年来,石墨烯已经吸引了注意力从研究人员作为atomistically薄固体研究自组装材料状态碱基。碱基和石墨烯薄片发挥在了解基本的作用石墨烯自组装的碱基床单对这些非共价分子极化率碱基和之间的相互作用潜在的石墨烯片的缺席文学。从可极化的分子动力学模拟研究了解极化的影响在非共价相互作用的强度。最后,我们报告柯克的发展描述可极化的参数石墨烯表。用于研究的self-aggregation现象碱基在石墨烯的支持。交互模式的重大变化包容的极化模拟系统,可极化的产生实验结果相似研究。栈的形成的概率guanine-rich系统,自发的H-bonded结构的形成石墨烯片,提到的重要性DNA序列和组成。没有观察到添加剂的影响模拟。极化对DNA的吸附的影响石墨烯单碱基,但方法可以扩展到包括很多小分子和完整的DNA链。

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