Anomalous Mobility of Highly Charged Particles in Pores

Yinghua Qiu, Crystal Yang, Preston Hinkle, Ivan V. Vlassiouk, Zuzanna S. Siwy

Research output: Contribution to journalArticlepeer-review

33 Scopus citations

Abstract

Single micropores in resistive-pulse technique were used to understand a complex dependence of particle mobility on its surface charge density. We show that the mobility of highly charged carboxylated particles decreases with the increase of the solution pH due to an interplay of three effects: (i) ion condensation, (ii) formation of an asymmetric electrical double layer around the particle, and (iii) electroosmotic flow induced by the charges on the pore walls and the particle surfaces. The results are important for applying resistive-pulse technique to determine surface charge density and zeta potential of the particles. The experiments also indicate the presence of condensed ions, which contribute to the measured current if a sufficiently high electric field is applied across the pore.

Original languageEnglish
Pages (from-to)8517-8523
Number of pages7
JournalAnalytical Chemistry
Volume87
Issue number16
DOIs
StatePublished - Aug 18 2015

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