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Steered molecular dynamics simulation study on dynamic self-assembly of single-stranded DNA with double-walled carbon nanotube and graphene

机译:双壁碳纳米管和石墨烯单链DNa动态自组装的分子动力学模拟研究

摘要

In the present work, we explored the diameter selectivity of dynamic self-assembly for the single-strand DNA (ssDNA) encapsulation in double-walled nanotubes (DWNTs) via molecular dynamics simulation method. Moreover, the pulling out process was carried out by steered molecular dynamics simulations. Considering pi-pi stacking and solvent accessibility together, base-CNT binding should be strongest on a graphene sheet and weakest on the inner CNT surface. When pulling the ssDNA out of the single-walled carbon nanotube (SWNT), the force exhibits characteristic fluctuations around a plateau about 300 pN. Each fluctuation force pulse to pull ssDNA corresponds to the exit of one base. In addition, the solvents used for the system are also of significant interest. Water does play an important role in encapsulation process but doesn't in the pulling out process.
机译:在本工作中,我们通过分子动力学模拟方法探索了动态自组装对双壁纳米管(DWNT)中单链DNA(ssDNA)封装的直径选择性。此外,通过转向分子动力学模拟进行了拉出过程。综合考虑pi-pi堆积和溶剂可及性,碱-CNT结合在石墨烯片上应最强,而在CNT内表面上应最弱。当从单壁碳纳米管(SWNT)中拉出ssDNA时,该力在约300 pN的平台附近表现出特征性波动。每个拉动ssDNA的波动力脉冲对应一个碱基的出口。另外,用于该系统的溶剂也很重要。水在封装过程中确实起着重要作用,但在抽出过程中却没有。

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