Journal of the American Chemical Society · 2009 · 381 citations · 20 references
EngineeringNanoporous MaterialSmart PolymerNanodevicesChemical EngineeringNanoscale ChemistryNanosensorMicrofluidicsBiophysicsSingle Conical NanoporesNanotechnologyResponsive BrushesZwitterionic Polymer BrushesNanofluidicsManipulating Ionic TransportResponsive Polymer BrushesNanomaterialsBioelectronicsNanoreactorIonic ConductorNanopores
The study introduces zwitterionic polymer brushes into single conical nanopores to create a signal‑responsive chemical nanodevice. The brushes, composed of zwitterionic monomers whose charge is pH‑regulated, fine‑tune ionic transport by adjusting the electrolyte pH. This approach yields greater control over rectification than charged monolayer‑modified nanochannels and suggests new possibilities for smart nanodevices.
In this work we describe for the first time the integration of "smart" polymer brushes into single conical nanopores to obtain a new highly functional signal-responsive chemical nanodevice. The responsive brushes were constituted of zwitterionic monomers whose charge is regulated via pH changes in the environmental conditions. The pH-dependent chemical equilibrium of the monomer units provides a fine-tuning of the ionic transport though the nanopore by simply presetting the pH of the electrolyte solution. Our results demonstrate that this strategy enables a higher degree of control over the rectification properties when compared to the nanochannels modified with charged monolayer assemblies. We envision that these results will create completely new avenues to build-up "smart" nanodevices using responsive polymer brushes integrated into single conical nanopores.
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Electrostatic Control of Ions and Molecules in Nanofluidic Transistors
Rohit Karnik, Rong Fan, Min Yue et al. · Nano Letters · 2005 · 650 citations
Ivan Vlassiouk, Zuzanna S. Siwy · Nano Letters · 2007 · 610 citations