Advanced Functional Materials · 2014 · 36 citations · 37 references
Translocation TimesEngineeringNanoporous MaterialNanodevicesLong Passage TimesMetallized Dielectric MembranesIndividual NanoporesShort Ssdna MoleculesDna NanotechnologyDna ComputingBiophysicsMaterials ScienceBiological NanomaterialsNanotechnologyNanomanufacturingNanofluidicsNanostructuringControlled BreakdownNano ApplicationNanophysicsNanomaterialsApplied PhysicsNanoreactorNanofabricationNanopore TechnologyNanopores
The fabrication of individual nanopores in metallized dielectric membranes using controlled breakdown directly in solution is described. Nanopores as small as 1.5‐nm in diameter are fabricated in Au‐coated silicon nitride membranes immersed in 1 m KCl by subjecting them to high electric fields. The physical and electrical characteristics of nanopores produced with this method are presented. The translocation of short single‐stranded DNA molecules is demonstrated through such nanopore devices without further passivation of the metallic surface. Metallized nanopores can prolong the translocation times of 50‐nt ssDNA fragments by as much as two orders of magnitude, while the slowest events can reach an average speed as slow as 2 nucleotides per millisecond. The mechanism for the long dwell‐time distribution is differentiated from prior studies, which relied on friction to slow down DNA, and is attributed to nucleotide‐Au interactions.
37
Continuous base identification for single-molecule nanopore DNA sequencing
James Clarke, Hai‐Chen Wu, Lakmal Jayasinghe et al. · Nature Nanotechnology · 2009 · 1.8K citations · Full text
Modeling the conductance and DNA blockade of solid-state nanopores
Stefan W. Kowalczyk, Alexander Y. Grosberg, Yitzhak Rabin et al. · Nanotechnology · 2011 · 481 citations
DNA Translocation Governed by Interactions with Solid-State Nanopores
Meni Wanunu, Jason Sutin, Ben McNally et al. · Biophysical Journal · 2008 · 480 citations · Full text