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Efficient electrochemomechanical energy conversion in nanochannels grafted with polyelectrolyte layers with pH-dependent charge density

机译:pH依赖电荷密度的接枝有聚电解质层的纳米通道中的高效电化学能量转换

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摘要

Nanochannels, functionalized by grafting with a layer of charged polyelectrolyte (PE), have been employed for a large number of applications such as flow control, ion sensing, ion manipulation, current rectification and nanoionic diode fabrication. Recently, we established that such PE-grafted nanochannels, often denoted as "soft" nanochannels, can be employed for highly efficient, streaming-current-induced electrochemomechanical energy conversion in the presence of a background pressure-driven transport. In this paper, we extend our calculation for the practically realizable situation when the PE layer demonstrates a pH-dependent charge density. Consideration of such pH dependence necessitates consideration of hydrogen and hydroxyl ions in the electric double layer charge distribution, cubic distribution of the monomer profile, and a PE layer-induced drag force that accounts for this given distribution of the monomer profile. Our results express a hitherto unknown dependence of the streaming electric field (or the streaming potential) and the efficiency of the resultant energy conversion on parameters such as the pH of the surrounding electrolyte and the pK(a) of the ionizable group that ionizes to produce the PE charge-we demonstrate that increase in the pH and the PE layer thickness and decrease in the pKa and the ion concentration substantially enhance the energy conversion efficiency.
机译:通过嫁接一层带电的聚电解质(PE)进行功能化的纳米通道已用于许多应用,例如流量控制,离子感测,离子操纵,电流整流和纳米离子二极管制造。最近,我们确定了这种PE接枝的纳米通道(通常称为“软”纳米通道)可以在存在背景压力驱动的运输过程中用于高效,流动电流诱导的电化学能量转换。在本文中,我们将计算的范围扩展到了PE层表现出pH依赖的电荷密度时的实际可行情况。考虑到这种pH依赖性,必须考虑双电层电荷分布中氢和氢氧根离子,单体分布的三次分布以及考虑到该给定的单体分布的PE层诱导的拉力。我们的结果表达了迄今为止未知的流电场(或流电势)的依赖性以及由此产生的能量转换效率对诸如周围电解质的pH值和电离产生的可电离基团的pK(a)等参数的影响PE电荷-我们证明pH值和PE层厚度的增加以及pKa和离子浓度的降低大大提高了能量转换效率。

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  • 来源
    《Microfluidics and nanofluidics》 |2016年第2期|37.1-37.14|共14页
  • 作者单位

    Univ Maryland, Dept Mech Engn, College Pk, MD 20742 USA;

    Univ Maryland, Dept Mech Engn, College Pk, MD 20742 USA;

    Univ Maryland, Dept Mech Engn, College Pk, MD 20742 USA;

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