Publications
A DNA turbine powered by a transmembrane potential across a nanopore." Nature Nanotechnology 19:338-344 (2024).
"The Manipulation of the Internal Hydrophobicity of FraC Nanopores Augments Peptide Capture and Recognition." ACS Nano (2021).
nn0c09958_si_001.pdf (1.59 MB)
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The Manipulation of the Internal Hydrophobicity of FraC Nanopores Augments Peptide Capture and Recognition." ACS Nano (2021).
nn0c09958_si_001.pdf (1.59 MB)
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The emerging landscape of single-molecule protein sequencing technologies." Nature Methods 18 (2021).
"Atoms to Phenotypes: Molecular Design Principles of Cellular Energy Metabolism." Cell 179:1098-1111.e23 (2019).
"Mechanical Trapping of DNA in a Double-Nanopore System." Nano Letters 16:8021-8028 (2016).
Supporting Information (pdf) (2.24 MB)
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Mechanical Trapping of DNA in a Double-Nanopore System." Nano Letters 16:8021-8028 (2016).
Supporting Information (pdf) (2.24 MB)
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Rectification of Ion Current in Nanopores Depends on the Type of Monovalent Cations: Experiments and Modeling." The Journal of Physical Chemistry C 118:9809-9819 (2014).
"Rectification of the current in alpha-hemolysin pore depends on the cation type: the alkali series probed by MD simulations and experiments." The Journal of Physical Chemistry C 115:4255-4264 (2011).
"Lipid bilayer coated Al(2)O(3) nanopore sensors: towards a hybrid biological solid-state nanopore." Biomed Microdevices 13:671-82 (2011).
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