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DNA origami-graphene hybrid nanopore for DNA detection
Amir Barati Farimani
, Payam Dibaeinia
, Narayana R. Aluru
Mechanical Science and Engineering
Beckman Institute for Advanced Science and Technology
National Center for Supercomputing Applications (NCSA)
Bioengineering
Micro and Nanotechnology Laboratory
Industrial and Enterprise Systems Engineering
Electrical and Computer Engineering
Materials Research Laboratory
Research output
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peer-review
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Keyphrases
DNA Bases
20%
DNA Detection
100%
DNA Nanoparticles
20%
DNA Nanostructures
20%
DNA Origami
100%
DNA Strands
40%
DNA Translocation
20%
Dwell Time
40%
Friction
20%
Graphene
60%
Graphene Heterostructures
20%
Graphene Hybrids
100%
Heterostructure
20%
Hybrid Nanopore
100%
Hydrogen Bond (H-bond)
20%
Ionic Conductivity
20%
Ionic Current
20%
Molecular Dynamics Simulation
20%
Nanopore
80%
Pore Mouth
20%
Residence Time
20%
Single-molecule Studies
20%
Solid-state Nanopore
20%
Specific Interactions
20%
Two-layer
20%
Material Science
DNA Sequencing
14%
Graphene
28%
Graphene Origami
100%
Heterojunction
28%
Hydrogen Bonding
14%
Ionic Conductivity
14%
Nanopore
100%
Nanostructure
14%
Physics
Graphene
100%
Heterojunctions
20%
Hydrogen Bond
20%
Ion Current
40%
Molecular Dynamics
20%
Nanomaterial
20%