NanoeCHEM
Nanopore Electrode Array as High-Performance Electrochemical Sensor
Reitemeier, J.; Metro, J.; Fu, K. X.* “Nanopore sensing and beyond: electrochemical systems for optically-coupled single-entity studies, stimulus-responsive gating applications, and point-of-care sensors,” Sensors and Actuators Reports, 2024, 100225.
Kwon, S.-R.; Baek, S.; Fu, K.; Bohn, P. W.* “Electrowetting-Mediated Transport to Produce Electrochemical Transistor Action in Nanopore Electrode Arrays,” Small, 2020, 16, 1907249.
Fu, K.; Kwon, S.-R.; Han, D.; Bohn, P. W.* “Single Entity Electrochemistry in Nanopore Electrode Arrays: Ion Transport Meets Electron Transfer in a Confined Geometries,” Accounts of Chemical Research, 2020, 53, 719-728.
Kwon, S.-R.#; Fu, K.#; Han, D.; Bohn, P. W.* “Redox Cycling in Individually Encapsulated Attoliter-Volume Nanopores,” ACS Nano, 2018, 12, 12923-12931.
Fu, K.#; Han, D.#; Crouch, M. G.; Kwon, S.-R.; Bohn, P. W.* “Voltage-Gated Nanoparticle Transport and Collisions in Attoliter-Volume Nanopore Electrode Arrays,” Small, 2018, 14, 1703248.
Fu, K.; Bohn, P. W.* “Nanopore Electrochemistry: A Nexus for Molecular Control of Electron Transfer Reactions,” ACS Central Science, 2018, 4, 20-29.
Han, D.; Crouch, M.G.; Fu, K.; Bohn, P. W.* “Correlated Optical and Electrochemical Detection Reveals the Single-Molecule Insights in Zero-Dimensional Nanopore Electrode Arrays,” Chemical Science, 2017, 8, 5345-5355.
Fu, K.; Han, D.; Ma, C.; Bohn, P. W.* “Ion Selective Redox Cycling in Zero-dimensional Nanopore Electrode Arrays at Low Ionic Strength,” Nanoscale, 2017, 9, 5164-5171.
Han, D.; Zaino, L. P.; Fu, K.; Bohn, P. W.* “Redox cycling in Nanopore-Confined Recessed Dual Ring Electrode Arrays,” Journal of Physical Chemistry C, 2016, 120, 20634-20641.
Fu, K.; Han, D.; Ma, C.; Bohn, P. W.* “Electrochemistry at Single Molecule Occupancy in Nanopore-Confined Recessed Ring Disk Electrode Arrays,” Faraday Discussions, 2016, 193, 51-64.