论文标题
关于1-吡亚丁酰酸琥珀酰亚胺酯吸附在石墨烯上的1-吡亚丁酰酸酯的稳定性的理论分析
Theoretical Analysis on the Stability of 1-Pyrenebutanoic Acid Succinimidyl Ester Adsorbed on Graphene
论文作者
论文摘要
基于密度功能理论研究了石墨烯对1-二烯丙基酸琥珀酰酯(PASE)的吸附结构。我们发现了两个局部稳定的结构:一个直接结构,其链酸琥珀酰亚胺基酯(BSE)的链状部分位于降低的结构,而弯曲的结构则是弯曲的结构,其BSE部分远离石墨烯,使Pyrene(Py)部分吸附在石墨烯上。然后,为了阐明吸附机制,我们分别估计了PY和BSE部分对整个PASE吸附的贡献,并且发现BSE部分的吸附效应与PY的贡献相比是次要的。接下来,通过笔直结构和弯曲结构之间的激活能屏障证实了BSE部分在室温下的迁移率。为了考虑外部环境,我们考虑了氨基酸的存在以及三维参考相互作用位点模型的水合效应。甘氨酸分子和溶剂环境的贡献相对于稳定弯曲的平台结构,发现相对于直底池结构。因此,当考虑从石墨烯的BSE部分的站立过程中,外部环境围绕PASE的影响至关重要。
The adsorbed structure of 1-pyrenebutanoic acid succinimidyl ester (PASE) on graphene was investigated based on density functional theory. We found two locally stable structures: a straight structure with the chainlike part of butanoic acid succinimidyl ester (BSE) lying down and a bent structure with the BSE part directed away from graphene, keeping the pyrene (Py) part adsorbed on graphene. Then, to elucidate the adsorption mechanism, we separately estimated the contributions of the Py and BSE parts to the entire PASE adsorption, and the adsorption effect of the BSE part was found to be secondary in comparison to the contribution of the Py. Next, the mobility of the BSE part at room temperature was confirmed by the activation energy barrier between straight and bent structures. To take account of the external environment, we considered the presence of amino acids and the hydration effect by a three-dimensional reference interaction site model. The contributions of glycine molecules and the solvent environment to stabilizing the bent PASE structure relative to the straight PASE structure were found. Therefore, the effect of the external environment around PASE is of importance when the standing-up process of the BSE part from graphene is considered.