Water-compression gating of nanopore transport
Animation illustrating a 10 ns MD trajectory of a dsDNA molecule translocating through a nanopore in a graphene membrane under a 100 mV bias. Harmonic restraints were applied to the DNA molecule to maintain its coaxial arrangement with the nanopore. Graphene atoms are shown as gray spheres. Some graphene atoms are not shown to depict the location of the pore more clearly.
Animation illustrating a 20 ns MD trajectory of a dsDNA molecule failing to translocate through a graphene membrane under a 1 V bias. Harmonic restraints were applied to the DNA molecule to maintain its coaxial arrangement with the nanopore. Graphene atoms are shown as gray spheres. Some graphene atoms are not shown to depict the location of the pore more clearly.
Animation illustrating a 20 ns MD trajectory of a dsDNA molecule held above a graphene membrane under a 1 V bias. Harmonic restraints were applied to the DNA molecule to maintain its coaxial arrangement with the nanopore. Graphene atoms are shown as gray spheres. DNA is able to rotate about its helical axis.
Animation illustrating a 20 ns MD trajectory of a dsDNA molecule held above a graphene membrane parallel to the membrane under a 1 V bias. Harmonic restraints were applied to the DNA molecule to maintain its parallel arrangement with the nanopore. The DNA is able to rotate about its helical axis and about the pore axis. Graphene atoms are shown as gray spheres.