Publications
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Phase behavior of gradient copolymers." The Journal of Chemical Physics 111:2329-2339 (1999).
"Picomolar Fingerprinting of Nucleic Acid Nanoparticles Using Solid-State Nanopores." ACS Nano 11:9701-9710 (2017). Supporting Information (12.11 MB)
"Plasmonic Nanopores for Trapping, Controlling Displacement, and Sequencing of DNA." ACS Nano 9:10598-10611 (2015). nn5b04173_si_001.pdf (681.52 KB)
"PoreDesigner for tuning solute selectivity in a robust and highly permeable outer membrane pore." Nature Communications 9:3661 (2018). supporting_information.pdf (1.34 MB)
"Predicting the DNA sequence dependence of nanopore ion current using atomic-resolution Brownian dynamics." J Phys Chem C Nanomater Interfaces 116:3376-3393 (2012).
"Porphyrin-Assisted Docking of a Thermophage Portal Protein into Lipid Bilayers: Nanopore Engineering and Characterization." ACS Nano 11:11931-11945 (2017).
"Polyhydrazide-based organic nanotubes as extremely efficient and highly selective artificial iodide channels." Angewandte Chemie International Edition 12:4806-4813 (2020). si-final.pdf (3.1 MB)
"Percolation transition prescribes protein size-specific barrier to passive transport through the nuclear pore complex." Nature Communications 13:5138 (2022). Supplementary Information (20.83 MB)
"Protein unfolding by SDS: the microscopic mechanisms and the properties of the SDS-protein assembly." Nanoscale 12:5422-5434 (2020). supplement.pdf (6.71 MB)
"A Practical Guide to Molecular Dynamics Simulations of DNA Origami Systems." In DNA Nanotechology: Methods and Protocols, edited by Giampaolo Zuccheri, 209-229. 2nd ed. Vol. 1811. Methods in Molecular Biology 1811. New York: Humana Press, 2018. origamitutorial.tar.gz (103.69 MB)
"Promiscuous histone mis-assembly is actively prevented by chaperones." Journal of the American Chemical Society 138:13207-13218 (2016). The cover image on JACS (2.25 MB) SI for the paper (33.5 MB)
"Promiscuous Histone Mis-Assembly Is Actively Prevented by Chaperones." J Am Chem Soc 138:13207-13218 (2016).
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