Molecular dynamics simulation studies of the translocation of charged homopolymers of length, N, driven by an electric potential gradient through a channel have been performed. We find that the translocation time, τ, displays an inverse power dependence on the temperature of the simulation τ ∼ (T − T0)−7/4, which is in very good agreement with experimental results. In addition, the dependence of τ on the driving field strength and the velocity of translocation on the polymer length N have also been obtained. The results suggest that such minimalist models are useful in modelling biological processes and that the molecular dynamics method is a suitable approach for carrying out these simulations
Over recent decades, the structure and movement of a linear, flexible polyelectrolyte is a phenomeno...
The translocation of a polymer chain through a crowded cylindrical channel is studied using the Lang...
The transport of small molecules through a polymer membrane is modeled using the computer simulation...
Molecular dynamics simulation studies of the translocation of charged homopolymers of length, N, dri...
Molecular dynamics simulation studies of the translocation of charged homopolymers of length, N, dri...
Monte Carlo simulation studies of the translocation of homopolymers of length N driven through a cha...
Monte Carlo simulation studies of the translocation of homopolymers of length N driven through a cha...
Monte Carlo simulation studies of the translocation of homopolymers of length N driven through a cha...
With the recent completion of the Human Genome Project and the announcement of the $1000 Genome Race...
Transport of molecules across membranes is an essential mechanism for life processes. These molecule...
The theoretical formulation of driven polymer translocation through nanopores is complicated by the ...
The theoretical formulation of driven polymer translocation through nanopores is complicated by the ...
The detection of linear polymers translocating through a nanoscopic pore is a promising idea for the...
The detection of linear polymers translocating through a nanoscopic pore is a promising idea for the...
The theoretical formulation of driven polymer translocation through nanopores is complicated by the ...
Over recent decades, the structure and movement of a linear, flexible polyelectrolyte is a phenomeno...
The translocation of a polymer chain through a crowded cylindrical channel is studied using the Lang...
The transport of small molecules through a polymer membrane is modeled using the computer simulation...
Molecular dynamics simulation studies of the translocation of charged homopolymers of length, N, dri...
Molecular dynamics simulation studies of the translocation of charged homopolymers of length, N, dri...
Monte Carlo simulation studies of the translocation of homopolymers of length N driven through a cha...
Monte Carlo simulation studies of the translocation of homopolymers of length N driven through a cha...
Monte Carlo simulation studies of the translocation of homopolymers of length N driven through a cha...
With the recent completion of the Human Genome Project and the announcement of the $1000 Genome Race...
Transport of molecules across membranes is an essential mechanism for life processes. These molecule...
The theoretical formulation of driven polymer translocation through nanopores is complicated by the ...
The theoretical formulation of driven polymer translocation through nanopores is complicated by the ...
The detection of linear polymers translocating through a nanoscopic pore is a promising idea for the...
The detection of linear polymers translocating through a nanoscopic pore is a promising idea for the...
The theoretical formulation of driven polymer translocation through nanopores is complicated by the ...
Over recent decades, the structure and movement of a linear, flexible polyelectrolyte is a phenomeno...
The translocation of a polymer chain through a crowded cylindrical channel is studied using the Lang...
The transport of small molecules through a polymer membrane is modeled using the computer simulation...