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Electrical Repulsive Energy between Two Cylindrical Particles with Finite Length:Configuration Dependence

机译:长度有限的两个圆柱粒子之间的斥力:构型依赖性

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The electrical repulsive energy between two model cylinders was calculated by solving nonlinear Poission-Boltzmann (P-B) equation under Derjaguin approximation.Effects of the surface potential,Debye screening length,and configuration of cylinders on the repulsive interaction energy were examined.Due to the anisotropy of the shape of cylinder,the interaction repulsive energy showed dependence to the configuration of particles;cylinders aligned in end-to-end configuration showed largest repulsive energy and crossed particles had lowest interaction energy.The configuration effect is originated from the curvature effect of the interacting surfaces.The curved surfaces showed less repulsive energy than fiat surfaces at the same interacting surface area.The configuration dependency of interaction energy agreed with the previous analytical solution obtained under the linearized P-B equation.The approach and results present in this report would be applicable in predicting colloidal behavior of cylindrical particles.
机译:通过在Derjaguin近似下求解非线性Poission-Boltzmann(PB)方程来计算两个模型圆柱之间的电排斥能,并研究了表面势,德拜屏蔽长度和圆柱构形对排斥相互作用能的影响。圆柱体形状的相互作用排斥能表现出与颗粒形态的相关性;端对端排列的圆柱体具有最大的排斥能,而交叉的颗粒具有最低的相互作用能。在相同的相互作用表面积下,弯曲表面的排斥能比平整表面要小。相互作用能的构型依赖性与线性PB方程下获得的先前解析解一致。本报告中提出的方法和结果将适用在预测胶体行为圆柱形颗粒。

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