E. Babich, J. Paraszczak, et al.
Microelectronic Engineering
A biomimetic nanochannel coated with a self-assembled monolayer (SAM) can be used for sensing and analyzing biomolecules. The interaction between a transported biomolecule and a SAM governs the mechanically or electrically driven motion of the molecule. To investigate the translocation dynamics of a biomolecule, we performed all-atom molecular dynamics simulations on a single-stranded DNA in a solidstate nanochannel coated with a SAM that consists of octane or octanol polymers. Simulation results demonstrate that the interaction between DNA and a hydrophobic or a hydrophilic SAM is effectively repulsive or adhesive, respectively, resulting in different translocation dynamics of DNA. Therefore, with proper designs of SAMs coated on a channel surface, it is possible to control the translocation dynamics of a biomolecule. This work also demonstrates that traditional tribology methods can be deployed to study a biological or biomimetic transport process.s © 2010 American Chemical Society.
E. Babich, J. Paraszczak, et al.
Microelectronic Engineering
H.D. Dulman, R.H. Pantell, et al.
Physical Review B
P.C. Pattnaik, D.M. Newns
Physical Review B
J.R. Thompson, Yang Ren Sun, et al.
Physica A: Statistical Mechanics and its Applications