State-of-the-art computational methods in solid-state chemistry were applied to predict the structural and spectroscopic properties of the α and γ crystalline polymorphs of nylon 6. Density functional theory calculations augmented with an empirical dispersion correction (DFT-D) were used for the optimization of the two different crystal structures and of the isolated chains, characterized by a different regular conformation and described as one-dimen- sional infinite chains. The structural parameters of both crystalline polymorphs were correctly predicted, and new insight into the interplay of conformational effects, hydrogen bonding, and van der Waals interactions in affecting the properties of the crystal structures of polyami...
Density functional theory calculations with periodic boundary conditions have been carried out for t...
Density functional theory calculations with periodic boundary conditions have been carried out for t...
Exploiting the very recent potentialities of state-of-the-art quantum chemical simulations of crysta...
State-of-the-art computational methods in solid-state chemistry were applied to predict the structu...
State-of-the-art computational methods in solid-state chemistry were applied to predict the structu...
State-of-the-art computational methods in solid-state chemistry were applied to predict the structu...
State-of-the-art computational methods in solid-state chemistry were applied to predict the structur...
The IR spectrum of Nylon 6,6 in the crystalline α phase is computed by means of dispersion-corrected...
The IR spectrum of Nylon 6,6 in the crystalline α phase is computed by means of dispersion-corrected...
The IR spectrum of Nylon 6,6 in the crystalline α phase is computed by means of dispersion-corrected...
The IR spectrum of Nylon 6,6 in the crystalline α phase is computed by means of dispersion-corrected...
The IR spectrum of Nylon 6,6 in the crystalline α phase is computed by means of dispersion-corrected...
Density functional theory calculations with periodic boundary conditions have been carried out for t...
Density functional theory calculations with periodic boundary conditions have been carried out for t...
Density functional theory calculations with periodic boundary conditions have been carried out for t...
Density functional theory calculations with periodic boundary conditions have been carried out for t...
Density functional theory calculations with periodic boundary conditions have been carried out for t...
Exploiting the very recent potentialities of state-of-the-art quantum chemical simulations of crysta...
State-of-the-art computational methods in solid-state chemistry were applied to predict the structu...
State-of-the-art computational methods in solid-state chemistry were applied to predict the structu...
State-of-the-art computational methods in solid-state chemistry were applied to predict the structu...
State-of-the-art computational methods in solid-state chemistry were applied to predict the structur...
The IR spectrum of Nylon 6,6 in the crystalline α phase is computed by means of dispersion-corrected...
The IR spectrum of Nylon 6,6 in the crystalline α phase is computed by means of dispersion-corrected...
The IR spectrum of Nylon 6,6 in the crystalline α phase is computed by means of dispersion-corrected...
The IR spectrum of Nylon 6,6 in the crystalline α phase is computed by means of dispersion-corrected...
The IR spectrum of Nylon 6,6 in the crystalline α phase is computed by means of dispersion-corrected...
Density functional theory calculations with periodic boundary conditions have been carried out for t...
Density functional theory calculations with periodic boundary conditions have been carried out for t...
Density functional theory calculations with periodic boundary conditions have been carried out for t...
Density functional theory calculations with periodic boundary conditions have been carried out for t...
Density functional theory calculations with periodic boundary conditions have been carried out for t...
Exploiting the very recent potentialities of state-of-the-art quantum chemical simulations of crysta...