论文标题

沙林和空气渗透通过纳米多孔石墨烯

Sarin and Air Permeation Through a Nanoporous Graphene

论文作者

Maria, Marco A., Fonseca, Alexandre F.

论文摘要

沙林气体是危险的化学战剂(CWA)。它是一种能够在大约15分钟内将一个人死亡的神经毒剂。空气中沙林分子的致命浓度约为30 mg/m3。对这种气体的实验研究需要非常仔细的安全协议来处理和存储。因此,关于沙林气体的理论和计算研究非常受欢迎,可能为管理这种致命物质提供重要的安全指南。在这项工作中,我们使用经典分子动力学模拟的工具研究了沙林,空气和纳米多孔石墨烯之间的相互作用。为了通过石墨烯在可能的沙林选择性过滤中投射一些光,我们设计了一个两部分模拟盒,中间放置了一个多孔石墨烯纳米片。沙林和空气分子最初仅放置在盒子的一侧,以产生朝向另一侧传递的初始压力。选择盒子尺寸,以便石墨烯中的孔是沙林和空气分子可以到达盒子另一侧的唯一可能的方法。在10 ns的模拟过程中监测了通过石墨烯孔的分子数量,并比较了不同温度的结果。结果表明,就孔的尺寸很小,石墨烯和分子之间的范德华力在室温下在将沙林保持在石墨烯附近。

Sarin gas is a dangerous chemical warfare agent (CWA). It is a nerve agent capable of bringing a person to death in about 15 minutes. A lethal concentration of sarin molecules in air is about 30 mg/m3. Experimental research on this gas requires very careful safety protocols for handling and storage. Therefore, theoretical and computational studies on sarin gas are very welcome and might provide important safe guides towards the management of this lethal substance. In this work, we investigated the interactions between sarin, air and nanoporous graphene, using tools of classical molecular dynamics simulations. Aiming to cast some light in the possible sarin selective filtration by graphene, we designed a bipartite simulation box with a porous graphene nanosheet placed at the middle. Sarin and air molecules were initially placed only on one side of the box so as to create an initial pressure towards the passage of both to the other side. The box dimensions were chosen so that the hole in the graphene was the only possible way through which sarin and air molecules can get to the other side of the box. The number of molecules that passed through the hole in graphene was monitored during 10 ns of simulation and the results for different temperatures were compared. The results show that, as far as the size of the holes are small, van der Waals forces between graphene and the molecules play a significant role on keeping sarin near graphene, at room temperature.

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