A New Analytical Formulation for the Electrophoretic Mobility of a Colloidal Sphere
Journal article, 2025

A new analytical equation for the electrophoretic mobility of a colloidal sphere, homogeneously charged, is derived. This equation reduces to the well-known Henry’s formulation for low surface potentials. For high surface potentials, the equation is compared to the full numerical result. It is found that the equation performs well up to surface potentials of 50 mV. For larger surface potentials, the equation performs well for (Formula presented.), where (Formula presented.) is the inverse of Debye’ s length and a the radius of the particle. Differences between analytical and numerical solutions for (Formula presented.) are studied. The case of a particle with a constant surface charge is discussed. In that case, a very simple equation relates the surface charge of the particle to the electrophoretic mobility for (Formula presented.).

zeta potential

Smoluchowski

colloid

electrophoresis

Hückel

Author

Angela Casarella

Chalmers, Architecture and Civil Engineering, Geology and Geotechnics

Simon Gourdin-Bertin

Claire Chassagne

Delft University of Technology

Entropy

10994300 (eISSN)

Vol. 27 4 336

Subject Categories (SSIF 2025)

Physical Chemistry

DOI

10.3390/e27040336

PubMed

40282571

More information

Latest update

5/8/2025 1