We study the dilute aqueous solutions of poly(ethylene oxide) (PEO) oligomers that are subject to an elongating force dipole acting on both chain ends using atomistic molecular dynamics. By increasing the force, liquid–liquid demixing can be observed at room temperature far below the lower critical solution temperature. For forces above 35 pN, fibrillar nanostructures are spontaneously formed related to a decrease in hydrogen bonding between PEO and water. Most notable is a rapid decrease in the bifurcated hydrogen bonds during stretching, which can also be observed for isolated single chains. The phase-segregated structures display signs of chain ordering, but a clear signature of the crystalline order is not obtained during the simulation...
Equilibrium morphologies and mechanical properties of copolymers with hydrophobic segments are explo...
Conformational transitions in thermo-sensitive polymers are critical in determining their functional...
Polyelectrolyte gels can generate electric potentials under mechanical deformation. While the underl...
We study the dilute aqueous solutions of poly(ethylene oxide) (PEO) oligomers that are subject to an...
Poly(ethylene oxide) (PEO) is the quintessential biocompatible polymer. Due to its ability to form h...
In this paper, the conformation and dynamics properties of polyethylene oxide (PEO) and polypropylen...
Molecular mechanics and molecular dynamics simulations were applied in order to study the behaviour ...
In this paper, the conformation and dynamics properties of polyethylene oxide (PEO) and polypropylen...
In this paper, the conformation and dynamics properties of polyethylene oxide (PEO) and polypropylen...
A multiscale simulation of a hydrophobic polymer chain immersed in water including the supercooled r...
A multiscale simulation of a hydrophobic polymer chain immersed in water including the supercooled r...
Brownian dynamics simulations are used to study the unraveling process of polymer molecules in dilut...
Brownian dynamics simulations are used to study the unraveling process of polymer molecules in dilut...
Brownian dynamics simulations are used to study the unraveling process of polymer molecules in dilut...
Amphiphilic water-soluble polymers are actively used in designing novel nanomaterials and have been ...
Equilibrium morphologies and mechanical properties of copolymers with hydrophobic segments are explo...
Conformational transitions in thermo-sensitive polymers are critical in determining their functional...
Polyelectrolyte gels can generate electric potentials under mechanical deformation. While the underl...
We study the dilute aqueous solutions of poly(ethylene oxide) (PEO) oligomers that are subject to an...
Poly(ethylene oxide) (PEO) is the quintessential biocompatible polymer. Due to its ability to form h...
In this paper, the conformation and dynamics properties of polyethylene oxide (PEO) and polypropylen...
Molecular mechanics and molecular dynamics simulations were applied in order to study the behaviour ...
In this paper, the conformation and dynamics properties of polyethylene oxide (PEO) and polypropylen...
In this paper, the conformation and dynamics properties of polyethylene oxide (PEO) and polypropylen...
A multiscale simulation of a hydrophobic polymer chain immersed in water including the supercooled r...
A multiscale simulation of a hydrophobic polymer chain immersed in water including the supercooled r...
Brownian dynamics simulations are used to study the unraveling process of polymer molecules in dilut...
Brownian dynamics simulations are used to study the unraveling process of polymer molecules in dilut...
Brownian dynamics simulations are used to study the unraveling process of polymer molecules in dilut...
Amphiphilic water-soluble polymers are actively used in designing novel nanomaterials and have been ...
Equilibrium morphologies and mechanical properties of copolymers with hydrophobic segments are explo...
Conformational transitions in thermo-sensitive polymers are critical in determining their functional...
Polyelectrolyte gels can generate electric potentials under mechanical deformation. While the underl...