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Machine learning for non-additive intermolecular potentials: quantum chemistry to first-principles predictions (2022)
Journal Article

Prediction of thermophysical properties from molecular principles requires accurate potential energy surfaces (PES). We present a widely-applicable method to produce first-principles PES from quantum chemistry calculations. Our approach accurately in... Read More about Machine learning for non-additive intermolecular potentials: quantum chemistry to first-principles predictions.

Enhanced doping effects of multi?element on anisotropic thermal expansion in ZrO2 with new compositions (2020)
Journal Article

Coefficient of thermal expansion (CTE) of a solid material plays a critical role for a variety of high temperature applications such as thermal barrier coating (TBC) systems during the thermal cycling process. Ceramics contain ionic bonds; hence they... Read More about Enhanced doping effects of multi?element on anisotropic thermal expansion in ZrO2 with new compositions.

Reverse energy partitioning - An efficient algorithm for computing the density of states, partition functions, and free energy of solids (2016)
Journal Article

© 2016 Author(s). A robust and model free Monte Carlo simulation method is proposed to address the challenge in computing the classical density of states and partition function of solids. Starting from the minimum configurational energy, the algorith... Read More about Reverse energy partitioning - An efficient algorithm for computing the density of states, partition functions, and free energy of solids.