Using a realistic united-atom force field, molecular dynamics simulations were performed to study homogeneous nucleation of the crystal phase at about 30% supercooling from the melts of n-pentacontahectane (C150) and a linear polyethylene (C1000), both of which are long enough to exhibit the chain folding that is characteristic of polymer crystallization. The nucleation rate was calculated and the critical nuclei were identified using a mean first-passage time analysis. The nucleation rate was found to be insensitive to the chain length in this range of molecular weight. The critical nucleus contains about 150 carbons on average and is significantly smaller than the radius of gyration of the chains, at this supercooling. A cylinder model wa...
The crystallization of polymers is not, despite its importance in science and engineering, entirely ...
Large scale molecular dynamics simulations were carried out to study the kinetics of polymer melt cr...
The crystallization of polymers is not, despite its importance in science and engineering, entirely ...
In this work, we have studied crystallization in short polymer chains using molec-ular dynamics simu...
Homogeneous nucleation of the crystal phase in n-octane melts was studied by molecular simulation wi...
12 pags.; 10 figs.; 5 tabs.© 2015 American Chemical Society. Long molecular dynamics simulations of ...
We have performed molecular dynamics simulations to study the mechanism of crystallization from an u...
Thesis (S.M.)--Massachusetts Institute of Technology, Dept. of Materials Science and Engineering, 20...
This study reveals important features of polymer crystal formation at high-driving forces in entangl...
peer reviewedWe have performed molecular dynamics simulations to study the mechanism of crystallizat...
Long molecular dynamics simulations of the melt dynamics, glass transition and nonisothermal crystal...
Crystal growth from the melt of n-pentacontane (C50) was studied by molecular dynamics simulation. Q...
The paper presents numerical results from extensive molecular-dynamics simulations of the crystalliz...
Large scale molecular dynamics simulations were carried out to study the kinetics of polymer melt cr...
The crystallization of polymers is not, despite its importance in science and engineering, entirely ...
The crystallization of polymers is not, despite its importance in science and engineering, entirely ...
Large scale molecular dynamics simulations were carried out to study the kinetics of polymer melt cr...
The crystallization of polymers is not, despite its importance in science and engineering, entirely ...
In this work, we have studied crystallization in short polymer chains using molec-ular dynamics simu...
Homogeneous nucleation of the crystal phase in n-octane melts was studied by molecular simulation wi...
12 pags.; 10 figs.; 5 tabs.© 2015 American Chemical Society. Long molecular dynamics simulations of ...
We have performed molecular dynamics simulations to study the mechanism of crystallization from an u...
Thesis (S.M.)--Massachusetts Institute of Technology, Dept. of Materials Science and Engineering, 20...
This study reveals important features of polymer crystal formation at high-driving forces in entangl...
peer reviewedWe have performed molecular dynamics simulations to study the mechanism of crystallizat...
Long molecular dynamics simulations of the melt dynamics, glass transition and nonisothermal crystal...
Crystal growth from the melt of n-pentacontane (C50) was studied by molecular dynamics simulation. Q...
The paper presents numerical results from extensive molecular-dynamics simulations of the crystalliz...
Large scale molecular dynamics simulations were carried out to study the kinetics of polymer melt cr...
The crystallization of polymers is not, despite its importance in science and engineering, entirely ...
The crystallization of polymers is not, despite its importance in science and engineering, entirely ...
Large scale molecular dynamics simulations were carried out to study the kinetics of polymer melt cr...
The crystallization of polymers is not, despite its importance in science and engineering, entirely ...