16 Development of Intermolecular Potential Models

Monday, November 16, 2020: 8:00 AM - 9:00 AM
Thermodynamics and Transport Properties (01A) (PreRecorded+)

Description:
The reliability of molecular simulation results is ultimately dependent upon the efficacy of the intermolecular interactions that underpin the simulation. Consequently, development of accurate and reliable intermolecular potentials is critical for improved simulation capabilities. Extensive validation of developed intermolecular potentials is needed to ensure that simulation results are accurate and reproducible over a range of systems and conditions. We seek papers for this session dealing with development of potential models and force fields as obtained from experiment, quantum mechanical calculations, data inversion, etc. We also seek papers reporting extensive validation of potentials and force fields for a wide range of substances for condensed or solid phases at ambient or extreme conditions. Theoretical and methodological studies are also appropriate. Reactive force fields are welcome.

Sponsor:
Thermodynamics and Transport Properties
Chair:
Neeraj Rai Email: neerajrai@che.msstate.edu
Co-Chair:
Nav Nidhi Rajput Email: navnidhi.rajput@tufts.edu


(16a) Generating Intermolecular Potentials from Atom Probe Tomography Experiments
David J. Keffer, Adam Spannaus, Alex Greenhalgh, Vasileios Maroulas, Piotr Luszczek and Peter K. Liaw




(16d) Development of Accurate Surrogate Models for Crystal Structure Prediction: Bridging the Gap between Force Fields and DFT
David H. Bowskill, Isaac J. Sugden, Claire S. Adjiman and Constantinos C. Pantelides





(16i) The Open Force Field Initiative: Current Efforts Towards Transferable Force Fields for Biological and Organic Molecules
Michael R. Shirts, John Chodera, Michael K. Gilson, David L. Mobley and Lee-Ping Wang

See more of this Group/Topical: Engineering Sciences and Fundamentals