A molecular-level insight into phase transformations is in great demand for many molecular systems. It can be gained through computer simulations in which cooling is applied to a system at a constant rate. However, the impact of the cooling rate on the crystallization process is largely unknown. To this end, here we performed atomic-scale molecular dynamics simulations of organic phase-change materials (paraffins), in which the cooling rate was varied over four orders of magnitude. Our computational results clearly show that a certain threshold (1.2 × 1011 K/min) in the values of cooling rates exists. When cooling is slower than the threshold, the simulations qualitatively reproduce an experimentally observed abrupt change in the temperatur...
Classical nucleation theory describes the formation of the first solids from supercooled liquids and...
Homogeneous nucleation of the crystal phase in n-octane melts was studied by molecular simulation wi...
In molecular dynamics (MD) simulation, the crystallization behavior of a polymer nanoglobule was stu...
A molecular-level insight into phase transformations is in great demand for many molecular systems. ...
An accurate in silico evaluation of the thermal conductivity is critical for improving the thermal p...
Latent heat storages have the ability to contribute to a more sustainable energy supply network. How...
Large scale molecular dynamics simulations were carried out to study the kinetics of polymer melt cr...
Phase change materials are of great interest as active layers in rewritable optical disks and novel ...
Paraffin waxes are promising phase change materials, abundantly available at very low cost. Having l...
Using a realistic united-atom force field, molecular dynamics simulations were performed to study ho...
The effect of the cooling rate on the solidification process of liquid aluminium is studied using a ...
Polymer crystal melting kinetics is simulated by using molecular dynamics. A simplified molecular mo...
Although molecular dynamics (MD) simulations are commonly used to predict the structure and properti...
Large scale molecular dynamics simulations of bulk melts of polar (poly(vinylidene fluoride) (pVDF))...
Thanks to their outstanding physical properties, phase-change materials (PCM) are considered as one ...
Classical nucleation theory describes the formation of the first solids from supercooled liquids and...
Homogeneous nucleation of the crystal phase in n-octane melts was studied by molecular simulation wi...
In molecular dynamics (MD) simulation, the crystallization behavior of a polymer nanoglobule was stu...
A molecular-level insight into phase transformations is in great demand for many molecular systems. ...
An accurate in silico evaluation of the thermal conductivity is critical for improving the thermal p...
Latent heat storages have the ability to contribute to a more sustainable energy supply network. How...
Large scale molecular dynamics simulations were carried out to study the kinetics of polymer melt cr...
Phase change materials are of great interest as active layers in rewritable optical disks and novel ...
Paraffin waxes are promising phase change materials, abundantly available at very low cost. Having l...
Using a realistic united-atom force field, molecular dynamics simulations were performed to study ho...
The effect of the cooling rate on the solidification process of liquid aluminium is studied using a ...
Polymer crystal melting kinetics is simulated by using molecular dynamics. A simplified molecular mo...
Although molecular dynamics (MD) simulations are commonly used to predict the structure and properti...
Large scale molecular dynamics simulations of bulk melts of polar (poly(vinylidene fluoride) (pVDF))...
Thanks to their outstanding physical properties, phase-change materials (PCM) are considered as one ...
Classical nucleation theory describes the formation of the first solids from supercooled liquids and...
Homogeneous nucleation of the crystal phase in n-octane melts was studied by molecular simulation wi...
In molecular dynamics (MD) simulation, the crystallization behavior of a polymer nanoglobule was stu...