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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Electropumping of Water in Functionalized Carbon Nanotubes Using Rotating Electric Fields
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Electropumping of Water in Functionalized Carbon Nanotubes Using Rotating Electric Fields

机译:使用旋转电场在功能化碳纳米管中电挖掘

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摘要

The development of new methods for the effective pumping of water at the nanoscale is an important building block in the development of nanotechnologies due to the limitations of current approaches, such as electro-osmotic flow. In this paper we present the first nonequilbrium molecular dynamics results that demonstrate an effective net positive flow of water molecules within a functionalized carbon nanotube without the use of an effective pressure gradient. We have applied a spatially uniform rotating electric field that couples with the permanent dipole moment of the water molecules. Breaking the symmetry of the nanotube walls by asymmetrically functionalizing the carbon nanotube with carboxyl groups, we then take advantage of the coupling of spin angular momentum of the water molecules to their linear momentum to induce a positive net flow. Surprisingly our results show that a net flow can be achieved with only a small amount of functionalization. The net flow resulting from only a small amount of functionalization can be attributed to a combination of the strongly hydrophilic nature of the carboxyl group combined with the small diameter of the carbon nanotubes. These two factors mean that the symmetry between the upper and lower halves of the carbon nanotube is easily broken with a small number of carboxyl groups.
机译:在纳米尺度下有效泵送水的新方法的开发是由于电流方法的限制,例如电渗透流动的局限性,这是一种重要的构建块。在本文中,我们提出了第一种非Quilbillium分子动力学结果,其证明了官能化碳纳米管内的水分子的有效净阳性流动,而不使用有效的压力梯度。我们已经施加了一种空间均匀的旋转电场,其与水分子的永久偶极力矩耦合。通过用羧基与碳纳米管不对称官能化的碳纳米管官能化的对称性,然后利用水分子的旋转角动量的耦合到它们的线性动量来诱导正净流动。令人惊讶的是,我们的结果表明,只有少量功能化,可以实现净流量。由少量官能化产生的净流量可归因于羧基与碳纳米管的小直径组合的强亲水性质的组合。这两个因素意味着碳纳米管的上半部与下半部之间的对称性容易用少量羧基破裂。

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