...
首页> 外文期刊>Physics of fluids >Ionic diffusioosmotic transport in nanochannels grafted with pH-responsive polyelectrolyte brushes modeled using augmented strong stretching theory
【24h】

Ionic diffusioosmotic transport in nanochannels grafted with pH-responsive polyelectrolyte brushes modeled using augmented strong stretching theory

机译:使用增强强度拉伸理论建模的pH响应聚电解质刷接枝的纳米通道的离子差异传输

获取原文
获取原文并翻译 | 示例

摘要

In this paper, we study the diffusioosmotic (DOS) transport in a nanochannel grafted with pH-responsive polyelectrolyte (PE) brushes and establish brush-functionalization-driven enhancement in induced nanofluidic electric field and electrokinetic transport. The PE brushes are modeled using our recently developed augmented strong stretching theory. We consider the generation of the DOS transport due to the imposition of a salt concentration gradient along the length of the nanochannel. The presence of the salt concentration gradient induces an electric field that has an osmotic (associated with the flow-driven migration of the ions in the induced electric double layer) and an ionic (associated with the conduction current) component. These two components evolve in a manner such that the electric field in the brush-grafted nanochannel is larger (smaller) in magnitude than that in the brush-less nanochannels for the case where the electric field is positive (negative). Furthermore, we quantify the DOS flow velocity and establish that for most of the parameter choices, the DOS velocity, which is a combination of the induced pressure-gradient-driven chemiosmotic component and the induced electric field driven electroosmotic transport, is significantly larger for the nanochannels grafted with backbone-charged PE brushes (i.e., brushes where the charge is distributed along the entire length of the brushes) as compared to brush-free nanochannels or nanochannels grafted with PE brushes containing charges on their non-grafted ends.
机译:本文研究了纳米烷基中的扩散(DOS)转运,纳米响应聚电解质(PE)刷,并建立诱导的纳米流体电场和电动传输中的刷官能化驱动的增强。使用我们最近开发的增强强度拉伸理论建模PE刷子。我们考虑由于沿纳米通道的长度施加盐浓度梯度而产生的DOS传输。盐浓度梯度的存在诱导电场,该电场具有渗透渗透(与感应的电双层中离子的流动迁移相关)和离子(与导通电流相关)组分相关联。这两个组件以一种方式演变,使得刷子接枝纳米中的电场的幅度较大(较小),而不是电场为正(负)的刷型纳米中的较大型纳米。此外,我们量化了DOS流速,并确定了大多数参数选择,DOS速度,即诱导的压力梯度驱动的化学性化学组成和诱导的电场驱动的电渗透电流传输的组合显着更大与接枝的无刷油纳米或纳米在其非接枝端上的PE刷子接枝的无刷纳米槽或纳米切割物相比,纳米槽接枝带有骨干电荷的PE刷子(即,沿着刷子的整个长度分布)。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号