Laradji Mohamed
Department of Physics, The University of Memphis, Memphis, Tennessee 38152-3390, USA.
J Chem Phys. 2004 Jul 15;121(3):1591-600. doi: 10.1063/1.1763839.
Using Monte Carlo simulations of an off-lattice model, we study the elastic properties of polymer-grafted membranes. Our results are found to be in good agreement with those predicted by the classical path approximation of the self-consistent field theory and scaling theory based on de Gennes' blob picture. In particular, we found that when the membrane is grafted on both sides by brushes with same molecular weight N and grafting density sigma, the excess bending modulus induced by the polymers scales as N3 sigmaalpha where alpha is consistent with 7/3, as predicted by the self-consistent field theory, and 5/2, as predicted by the scaling theory. When the polymers are grafted to one side of the membrane only, the membrane bends away from the polymers with a spontaneous curvature with a scaling that is consistent with both scaling and self-consistent field theories. When the thickness of the brush exceeds the membrane's spontaneous radius of curvature, the bending modulus approaches a constant which is of the same order as the bending modulus of the bare membrane.
通过对非晶格模型进行蒙特卡罗模拟,我们研究了聚合物接枝膜的弹性性质。我们发现结果与基于德热纳的“链段”图像的自洽场理论和标度理论的经典路径近似所预测的结果非常吻合。特别是,我们发现当膜的两侧被具有相同分子量(N)和接枝密度(\sigma)的刷子接枝时,聚合物诱导的过量弯曲模量按(N^3\sigma^{\alpha})缩放,其中(\alpha)与自洽场理论预测的(7/3)以及标度理论预测的(5/2)一致。当聚合物仅接枝到膜的一侧时,膜以与标度理论和自洽场理论都一致的标度自发弯曲远离聚合物。当刷子的厚度超过膜的自发曲率半径时,弯曲模量接近一个与裸膜弯曲模量相同量级的常数。