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首页> 外文期刊>The Journal of Adhesion >Binding Force Between a Charged Wall and a Complex Formed by a Polyelectrolyte and an Electronically Responsive Cylinder
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Binding Force Between a Charged Wall and a Complex Formed by a Polyelectrolyte and an Electronically Responsive Cylinder

机译:带电壁与由聚电解质和电子响应性圆柱形成的复合物之间的结合力

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摘要

Recent experiments on DNA-assisted carbon nanotube (CNT) separation using ion exchange chromatography (IEC) suggest that the presence of an electronically responsive cylinder can affect the binding force between a polyelectrolyte (PE) and an oppositely charged wall embedded in a dilute solution. This is examined in this work by studying the force on a charged wall due to a complex consisting of two infinitely long cylinders with parallel axes (one representing the PE and the other being either metallic or dielectric). By considering the Debye-Huckel theory, the expressions for the binding force per unit length between the PE-cylinder complex and the oppositely charged wall are obtained for different electronic natures of the responsive cylinder. The results show that the binding force due to the PE near a grounded metallic cylinder is weaker than that due to the PE near a neutral dielectric cylinder, while a non-zero potential on the metallic cylinder can strongly affect the binding force.
机译:使用离子交换色谱(IEC)进行的DNA辅助碳纳米管(CNT)分离的最新实验表明,电响应圆柱体的存在会影响聚电解质(PE)与嵌入稀溶液中的带相反电荷的壁之间的结合力。在这项工作中,这是通过研究由两个无限长的圆柱体(具有平行轴)组成的复合体(一个代表PE,另一个代表金属或介电体)而产生的,在带电壁上的力得到了检验。通过考虑Debye-Huckel理论,针对响应圆柱体的不同电子性质,获得了PE圆柱体与带相反电荷的壁之间每单位长度的结合力的表达式。结果表明,接地金属圆柱体附近的PE引起的结合力比中性电介质圆柱体附近的PE引起的结合力弱,而金属圆柱体上的非零电位会强烈影响结合力。

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