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Phospholipid dynamics in graphene of different topologies: predictive modeling

机译:石墨烯在不同拓扑结构中的磷脂动力学:预测模型

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The subject of our scientific interest is the dynamics of the phospholipid molecules into a corrugated graphene sheet. According to our assumption by changing the topology of graphene properly it is possible to find the ways for management of the selective localization of phospholipid molecules to form the desired configuration of these structures. We considered DPPC (dipalmitoylphosphatidylcholine) phospholipids, which are the part of cell membranes and lipoproteins. We investigated the behavior of the phospholipids on the graphene sheet consisting of 1710 atoms with the size of 6.9 tun along the zigzag edge and 6.25 nm along the armchair edge. The numerical experiment was carried out using the original AMBER/AIREBO hybrid method with Lennard-Jones potential to describe the interaction between unbound atoms of different structures. The temperature was maintained at 300 K during the numerical experiment. All numerical experiments were performed using KVAZAR software system. We considered several cases of corrugated graphene with different width and dept of the corrugation. Special attention in our work was paid to the orientation of the phospholipids in the plane of graphene sheet.
机译:我们的科学兴趣是将磷脂分子转变成波纹状石墨烯片的动力学。根据我们的假设,通过适当地改变石墨烯的拓扑结构,可以找到管理磷脂分子选择性定位以形成这些结构所需构型的方法。我们考虑了DPPC(二棕榈酰磷脂酰胆碱)磷脂,它们是细胞膜和脂蛋白的一部分。我们研究了石墨烯片上磷脂的行为,该石墨烯片由1710个原子组成,沿之字形边缘的尺寸为6.9 tun,沿扶手椅状边缘的尺寸为6.25 nm。使用具有伦纳德·琼斯势能的原始AMBER / AIREBO混合方法进行了数值实验,以描述不同结构的未结合原子之间的相互作用。在数值实验期间温度保持在300K。所有数值实验均使用KVAZAR软件系统进行。我们考虑了几种波纹宽度和深度不同的波纹石墨烯。在我们的工作中,特别注意了磷脂在石墨烯片平面中的取向。

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