Matsen M W
University of Reading, School of Mathematical and Physical Sciences, Whiteknights, Reading, UK.
Eur Phys J E Soft Matter. 2012 Feb;35(2):13. doi: 10.1140/epje/i2012-12013-2. Epub 2012 Feb 27.
Classical strong-stretching theory (SST) predicts that, as opposing polyelectrolyte brushes are compressed together in a salt-free theta solvent, they contract so as to maintain a finite polymer-free gap, which offers a potential explanation for the ultra-low frictional forces observed in experiments despite the application of large normal forces. However, the SST ignores chain fluctuations, which would tend to close the gap resulting in physical contact and in turn significant friction. In a preceding study, we examined the effect of fluctuations using self-consistent field theory (SCFT) and illustrated that high normal forces can still be applied before the gap is destroyed. We now look at the effect of adding salt. It is found to reduce the long-range interaction between the brushes but has little effect on the short-range part, provided the concentration does not enter the salted-brush regime. Consequently, the maximum normal force between two planar brushes at the point of contact is remarkably unaffected by salt. For the crossed-cylinder geometry commonly used in experiments, however, there is a gradual reduction because in this case the long-range part of the interaction contributes to the maximum normal force.
经典的强拉伸理论(SST)预测,在无盐的θ溶剂中,当相反的聚电解质刷被压缩在一起时,它们会收缩以保持一个有限的无聚合物间隙,这为实验中观察到的超低摩擦力提供了一种潜在的解释,尽管施加了较大的法向力。然而,SST忽略了链的波动,链的波动会倾向于缩小间隙,导致物理接触,进而产生显著的摩擦。在之前的一项研究中,我们使用自洽场理论(SCFT)研究了波动的影响,并表明在间隙被破坏之前,仍然可以施加高法向力。我们现在研究加盐的影响。结果发现,加盐会降低刷子之间的长程相互作用,但对短程部分影响不大,前提是浓度未进入加盐刷区域。因此,两个平面刷在接触点处的最大法向力受盐的影响非常小。然而,对于实验中常用的交叉圆柱几何形状,法向力会逐渐减小,因为在这种情况下,相互作用的长程部分对最大法向力有贡献。