Publication | Closed Access
Electrochemical Single-Molecule Detection in Aqueous Solution Using Self-Aligned Nanogap Transducers
85
Citations
32
References
2013
Year
EngineeringAnalytical MicrosystemsBiomedical EngineeringChemistryBiosensorsChemical EngineeringIndividual Molecular TagsCommon Redox MediatorsNanosensorMicrofluidicsChemical SensorBiophysicsRedox CyclingNanotechnologySingle-molecule DetectionElectrochemistryLab-on-a-chipElectrochemical Single-molecule DetectionElectroanalytical Sensor
Electrochemical detection of individual molecular tags in nanochannels may enable cost-effective, massively parallel analysis and diagnostics platforms. Here we demonstrate single-molecule detection of prototypical analytes in aqueous solution based on redox cycling in 40 nm nanogap transducers. These nanofluidic devices are fabricated using standard microfabrication techniques combined with a self-aligned approach that minimizes gap size and dead volume. We demonstrate the detection of three common redox mediators at physiological salt concentrations.
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