Controlling swelling/deswelling of stimuli-responsive hydrogel nanofilms in electric fields

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Abstract

The swelling/deswelling transition of pH-sensitive, electrode-grafted, hydrogel nanofilms when exposed to electric fields is studied by theoretical analysis. In acidic conditions, the response of these films to changes in pH is dominated by network-surface interactions, while intra-network electrostatic repulsions, which are highly modulated by the adsorption of salt ions, determine material response at a higher pH. Film thickness is a non-monotonic function of solution pH and displays a local maximum, a local minimum or both, depending on the salt concentration and the applied voltage. We suggest the use of these materials in the development of biosensors and control of enzyme activity.

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Longo, G. S., Olvera De La Cruz, M., & Szleifer, I. (2016). Controlling swelling/deswelling of stimuli-responsive hydrogel nanofilms in electric fields. Soft Matter, 12(40), 8359–8366. https://doi.org/10.1039/c6sm01172a

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