Thermodynamic Charge-to-Mass Sensor for Colloids, Proteins, and Polyelectrolytes

Publication date

2016-11

Authors

van Rijssel, Jos
Costo, Rocio
Vrij, Agienus
Philipse, A.P.ISNI 000000038745113X
Erne, Ben H.ISNI 0000000397074702

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Advisors

Supervisors

Document Type

Article
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Abstract

A sensor is introduced that gauges the ratio of charge z to mass m of macro-ions in liquid media. The conductivity is measured in a small volume of salt solution, separated from the macro-ions by a semipermeable membrane. The mobile counterions released by the macro-ions increase the measured salt concentration, from which z/m can be calculated without any adjustable parameter. The charge sensor constitutes a noninvasive method that probes unperturbed macro-ions in a manner that is independent of (the distribution in) macro-ion size and shape. We validate the sensor’s general applicability for three kinds of macro-ions, spanning 2 orders of magnitude in z/m, namely, dextran sulfate, bovine serum albumin, and colloidal silica. Measured z/m values comply for all macro-ion types with independent information on macro-ion surface charge.

Keywords

electric charge, colloids, nanoparticles, polymers, zeta potential, conductivity, counterions, membranes

Citation

van Rijssel, J, Costo, R, Vrij, A, Philipse, A P & Erne, B H 2016, 'Thermodynamic Charge-to-Mass Sensor for Colloids, Proteins, and Polyelectrolytes', ACS Sensors, vol. 1, no. 11, pp. 1344-1350. https://doi.org/10.1021/acssensors.6b00510