Molecular dynamics simulations of structural and melting properties of Li2SiO3

02 engineering and technology 0210 nano-technology
DOI: 10.1016/j.ceramint.2017.11.128 Publication Date: 2017-11-21T21:01:11Z
ABSTRACT
Abstract Molecular dynamics simulations have been performed to investigate the structural and melting properties of single crystal and nanocrystal Li 2 SiO 3 . The simulated results of both lattice parameters and enthalpy as a function of temperature for single crystal are well consistent with the experimental values. The radial distribution functions and mean square displacement are utilized to analyze and characterize the structural evolution and melting behaviors in simulations. The models of nanocrystal Li 2 SiO 3 are constructed by the Voronoi tessellation techniques. We predict that the melting temperature of single crystal Li 2 SiO 3 is 1500 K, in close agreement with experiment. For nanocrystal Li 2 SiO 3 , the results indicate that the melting temperature decreases with the grain size decreasing, and drops to the range of 700–850 K.
SUPPLEMENTAL MATERIAL
Coming soon ....
REFERENCES (50)
CITATIONS (9)
EXTERNAL LINKS
PlumX Metrics
RECOMMENDATIONS
FAIR ASSESSMENT
Coming soon ....
JUPYTER LAB
Coming soon ....