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Spatiotemporal electrochemical detection in nanofluidic devices
Jin Cui
Faculty of Science and Technology
Research output
:
Thesis
›
PhD Thesis - Research UT, graduation UT
274
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Chemistry
Analytes
100%
Application
25%
Assay
25%
Chemical Kinetics Characteristics
25%
Chromatography
25%
Concentration
75%
Conducting Polymer
25%
Deoxyribonucleic Acid
25%
Electrochemical Detection
100%
Electrochemical Reaction
25%
Electrochemistry
25%
Enzyme Kinetics
25%
Fluctuation
25%
Mass Transfer
25%
Microelectrodes
25%
Molecule
25%
Nanochannel
50%
Nanofluidics
100%
Oligomer
25%
Pressure
25%
Procedure
25%
Redox State
25%
Single Molecule Detection
25%
Supporting Electrolyte
25%
Time
25%
Biochemistry, Genetics and Molecular Biology
Chromatography
50%
DNA
50%
Enzyme Kinetics
50%
Experiment
50%
Kinetics
50%
Lysozyme
50%
Microelectrode
50%
Mole (Insectivora)
50%
Molecule
100%
Pressure
50%
Spectroscopy Technique
50%
Steady State
50%
Time
50%
Material Science
Chromatography
14%
Conducting Polymer
14%
Devices
100%
DNA
14%
Electrochemical Reaction
14%
Electrode
100%
Electrolyte
14%
Enzyme
28%