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平板型高电位胶粒双电层的相互作用
引用本文:罗根祥,金军,王好平. 平板型高电位胶粒双电层的相互作用[J]. 物理化学学报, 2001, 17(6): 484-487. DOI: 10.3866/PKU.WHXB20010602
作者姓名:罗根祥  金军  王好平
作者单位:Department of Materials Science,Fushun Petroleum Institute,Fushun 113001
摘    要:
利用线性迭加法,提出了平行平板型高电位颗粒之间的弱相互作用的近似表达式.结合文献[3]给出的强相互作用表达式,对高电位平行平板型颗粒的相互作用给出了完整的描述,和精确数值解吻合相当好.强弱相互作用的接合点在κh=4,误差在接合点处最大,~10%.根据Derjaguin法和改进的Derjaguin法,求出了高电位球颗粒在恒电位条件下的相互作用能.

关 键 词:胶体  高表面电位  Derjaguin法  
收稿时间:2000-10-31
修稿时间:2000-10-31

Double Layer Interactionbetween Parallel Plates with High Surface Potential
LUO Gen-xiang,Jin Jun,WANG Hao-Ping. Double Layer Interactionbetween Parallel Plates with High Surface Potential[J]. Acta Physico-Chimica Sinica, 2001, 17(6): 484-487. DOI: 10.3866/PKU.WHXB20010602
Authors:LUO Gen-xiang  Jin Jun  WANG Hao-Ping
Affiliation:Department of Materials Science,Fushun Petroleum Institute,Fushun 113001
Abstract:
A simple method of calculating the interaction force and energy per unit area between two dissimilar plates with high potentials at constant surface potentials has been presented in Ref.[3],in which strong interaction of plates with high potentials was discussed.Using linear superposition,approximate expressions have been derived for weak repulsive interaction energy and force between parallel plates with high surface potential.Combining the results of Ref.[3], the double layer repulsive interaction between parallel plates with high surface potential has been integrally generalized.Juncture of strong and weak interaction is at κ h=4,and the relative error is largest at this point,~ 10% .Good agreement of the present results with the exact numerical results calculated by the computer is found over a wider range of the plate separation.Using Derjaguin's method and the improved Derjaguin's method the expressions of the interaction free energy between two dissimilar spheres with high surface potentials have also been derived.However,the range of application of the equations of interaction energy for the spheres are narrower than that of the plates.
Keywords:Colloid  High surface potential  Derjaguin′s method
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