We used molecular dynamics simulations to predict the steady state crystal shape of naphthalene grown from ethanol solution. The simulations were performed at constant supersaturation by utilizing a recently proposed algorithm [Perego et al., J. Chem. Phys., 2015, 142, 144113]. To bring the crystal growth within the timescale of a molecular dynamics simulation we applied well-tempered metadynamics with a spatially constrained collective variable, which focuses the sampling on the growing layer. We estimated that the resulting steady state crystal shape corresponds to a rhombic prism, which is in line with experiments. Further, we observed that at the investigated supersaturations, the {00[1 with combining macron]} face grows in a two step t...
Solution crystallization and dissolution are of fundamental importance to science and industry alike...
Crystals are indispensable in technology, nature, and our daily lives. For example, cooking uses man...
Understanding and predicting crystal growth is fundamental to the control of functionality in modern...
We used molecular dynamics simulations to predict the steady state crystal shape of naphthalene grow...
Several molecular organic crystals are known to exhibit significant changes to their steady-state gr...
Crystallization is a paramount purification technique in the pharmaceutical industries. Typically, p...
We present a molecular dynamics simulation method for the computation of the solubility of organic c...
In the cooling crystallization of 1,1-diamino-2,2-dinitroethylene (DADNE), it was found that the asp...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemical Engineering, 2017.Cata...
Crystal growth from the melt of n-pentacontane (C50) was studied by molecular dynamics simulation. Q...
Latent heat storages have the ability to contribute to a more sustainable energy supply network. How...
The shape of a crystalline organic solid has a major impact on its downstream processing and on its ...
In the pharmaceutical industry, the control of a new drug’s crystal form is key to optimise its form...
Polymorphism, the ability of a molecule to self-assemble into multiple solid-state forms, intimately...
noExploring nucleation processes by molecular simulation can provide a mechanistic understanding at...
Solution crystallization and dissolution are of fundamental importance to science and industry alike...
Crystals are indispensable in technology, nature, and our daily lives. For example, cooking uses man...
Understanding and predicting crystal growth is fundamental to the control of functionality in modern...
We used molecular dynamics simulations to predict the steady state crystal shape of naphthalene grow...
Several molecular organic crystals are known to exhibit significant changes to their steady-state gr...
Crystallization is a paramount purification technique in the pharmaceutical industries. Typically, p...
We present a molecular dynamics simulation method for the computation of the solubility of organic c...
In the cooling crystallization of 1,1-diamino-2,2-dinitroethylene (DADNE), it was found that the asp...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemical Engineering, 2017.Cata...
Crystal growth from the melt of n-pentacontane (C50) was studied by molecular dynamics simulation. Q...
Latent heat storages have the ability to contribute to a more sustainable energy supply network. How...
The shape of a crystalline organic solid has a major impact on its downstream processing and on its ...
In the pharmaceutical industry, the control of a new drug’s crystal form is key to optimise its form...
Polymorphism, the ability of a molecule to self-assemble into multiple solid-state forms, intimately...
noExploring nucleation processes by molecular simulation can provide a mechanistic understanding at...
Solution crystallization and dissolution are of fundamental importance to science and industry alike...
Crystals are indispensable in technology, nature, and our daily lives. For example, cooking uses man...
Understanding and predicting crystal growth is fundamental to the control of functionality in modern...