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Engineering Graphene Oxide/Water Interface from First Principles to Experiments for Electrostatic Protective Composites

机译:从第一原理到静电保护复合材料的第一个原理的工程石墨烯氧化物/水界面

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From the global spread of COVID-19 we learned that SARS-CoV-2 virus can be transmitted via respiratory liquid droplets. In this study, we performed first-principles calculations suggesting that water molecules once in contact with the graphene oxide (GO) layer interact with its functional groups, therefore, developing an electric field induced by the heterostructure formation. Experiments on GO polymer composite film supports the theoretical findings, showing that the interaction with water aerosol generates a voltage output signal of up to ?2 V. We then developed an electrostatic composite fiber by the coagulation method mixing GO with poly(methyl methacrylate) (PMMA). These findings could be used to design protective fabrics with antiviral activity against negatively charged spike proteins of airborne viruses.
机译:从Covid-19的全球传播中,我们了解到SARS-COV-2病毒可以通过呼吸液滴传输。在这项研究中,我们进行了第一原理计算,表明水分子与石墨烯氧化物(GO)层接触,因此与其官能团相互作用,因此开发由异质结构形成诱导的电场。 Go高分子复合膜上的实验支持理论上的结果,表明与水气溶胶的相互作用产生高达α2V的电压输出信号。然后通过凝血方法混合使用聚(甲基丙烯酸甲酯)进行静电复合纤维进行静电复合纤维( PMMA)。这些发现可用于设计具有抗病毒活性的保护织物,免受空气传播病毒的带负电荷的尖峰蛋白。

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