Pore-based structures occur widely in living organisms. Ion channels embedded in cell membranes, for example, provide pathways, where electron and proton transfer are coupled to exchange vital molecules. Electrochemical reactions at the nanoscale possess unique characteristics that are not accessible to conventional electrochemistry. Nanopore electrochemistry represents a nexus for molecular control of electron transfer reactions within confined volumes. In this thesis, these exciting advances will be highlighted by addressing three main topics. The first topic is focuses on the the fabrication and application of nanopore electrode arrays (NEAs), which are a combination of nanopore sensing technology and nanoelectrochemistry. High areal den...
Inspired by the functioning of cellular ion channels, pore-based structures with nanoscale openings ...
We discuss representative electrochemical nanopore sensing strategies, highlighting their underlying...
We discuss representative electrochemical nanopore sensing strategies, highlighting their underlying...
Pore-based structures occur widely in living organisms. Ion channels embedded in cell membranes, for...
Redox cycling is a powerful tool for the electrical detection of chemical electrode reactions. Owing...
Redox cycling is a powerful tool for the electrical detection of chemical electrode reactions. Owing...
Nanoscale redox cycling is a powerful technique for detecting electrochemically active molecules, ba...
Redox cycling electrochemistry in arrays of individually encapsulated attoliter-volume (V ∼ 10 aL) n...
Nanopore sensors are a new class of single-molecule biosensors that allow for the detection of DNA, ...
Nanopore sensors are a new class of single-molecule biosensors that allow for the detection of DNA, ...
Nanopore sensors are a new class of single-molecule biosensors that allow for the detection of DNA, ...
Nanopore sensors are a new class of single-molecule biosensors that allow for the detection of DNA, ...
Nanopore ionic current measurement is currently a prevailing readout and offers considerable opportu...
A nanopore electrode structure was fabricated consisting of ensembles of nanopores with separately a...
A nanopore electrode structure was fabricated consisting of ensembles of nanopores with separately a...
Inspired by the functioning of cellular ion channels, pore-based structures with nanoscale openings ...
We discuss representative electrochemical nanopore sensing strategies, highlighting their underlying...
We discuss representative electrochemical nanopore sensing strategies, highlighting their underlying...
Pore-based structures occur widely in living organisms. Ion channels embedded in cell membranes, for...
Redox cycling is a powerful tool for the electrical detection of chemical electrode reactions. Owing...
Redox cycling is a powerful tool for the electrical detection of chemical electrode reactions. Owing...
Nanoscale redox cycling is a powerful technique for detecting electrochemically active molecules, ba...
Redox cycling electrochemistry in arrays of individually encapsulated attoliter-volume (V ∼ 10 aL) n...
Nanopore sensors are a new class of single-molecule biosensors that allow for the detection of DNA, ...
Nanopore sensors are a new class of single-molecule biosensors that allow for the detection of DNA, ...
Nanopore sensors are a new class of single-molecule biosensors that allow for the detection of DNA, ...
Nanopore sensors are a new class of single-molecule biosensors that allow for the detection of DNA, ...
Nanopore ionic current measurement is currently a prevailing readout and offers considerable opportu...
A nanopore electrode structure was fabricated consisting of ensembles of nanopores with separately a...
A nanopore electrode structure was fabricated consisting of ensembles of nanopores with separately a...
Inspired by the functioning of cellular ion channels, pore-based structures with nanoscale openings ...
We discuss representative electrochemical nanopore sensing strategies, highlighting their underlying...
We discuss representative electrochemical nanopore sensing strategies, highlighting their underlying...