物理化学学报 >> 2001, Vol. 17 >> Issue (04): 377-380.doi: 10.3866/PKU.WHXB20010420

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高电位胶体颗粒强相互作用的近似表达式

陈崇钧;罗根祥;金军;王好平   

  1. 鞍山师范学院化学系,鞍山 114005;抚顺石油学院材料科学系,抚顺 113001
  • 收稿日期:2000-09-12 修回日期:2000-12-22 发布日期:2001-04-15
  • 通讯作者: 王好平 E-mail:wanghaoping@ihw.com.cn

Approximate Expressions for Strong Interaction of Colloidal Particles with High Surface Potential

Chen Chong-Jun;Luo Gen-Xiang;Jin Jun;Wang Hao-Ping   

  1. Department of Chemistry,Anshan Teachers College,Anshan 114005;Department of Materials Science,Fushun Petroleum Institute,Fushun 114005
  • Received:2000-09-12 Revised:2000-12-22 Published:2001-04-15
  • Contact: Wang Hao-Ping E-mail:wanghaoping@ihw.com.cn

关键词: 胶体, 平板型胶粒, 高表面电位, 相互作用能, 相互作用力

Abstract: When surface potential of the particles, ,is high,sinh y can be approximated by ≈ey/2 in the nonlinear PoissonBoltzmann equation.Thus,we present a simple method of calculating the interaction force and energy per unit area between two dissimilar plates with high potentials at constant surface potential.These formulae could be applicable to the case of repulsive case,in which the derivative of y must vanish at an interior point,and a minimum ymin=u always exists.A turning point at ~kh≈2(1)e-y1/2 for the repulsion or attraction between dissimilar planar surfaces.These formulae are divergent at 阧∞,and zero point at kh≈2 .This means that they can only be used at 阧 < 2 and accurate location is at kh ≤ 4.   Agreement of the approximation for force,Eq.(13),is good with the exact numerical values of the interaction of dissimilar plates given by Devereux [6] for high surface potentials.For y1 ≥5 kh ≤ 3.0 the relative errors of Eq.(13) are less than 5%,and for kh ≤ 3.5 relative errors are less than 10%.For the interaction energy,Eq.(15),the applicable range extends to kh =4.0.Beyond this range the error increases rapidly.The higher surface potential is the better the precision of Eq.(13)and Eq.( 15).The condition of the strong interaction has been satisfied.

Key words: Colloid, Particles of parallel flat plates, High surface potential,  Interaction energy, Interaction force