(376x) Molecular Dynamics Simulations of New Ionic Liquids with Crystal-like Structures As Highly Selective Membrane Materials for CO2 Separation
AIChE Annual Meeting
2019
2019 AIChE Annual Meeting
Computational Molecular Science and Engineering Forum
Poster Session: Computational Molecular Science and Engineering Forum (CoMSEF)
Tuesday, November 12, 2019 - 3:30pm to 5:00pm
In our work, we are using molecular dynamics methods to provide information about how the cations and anions interact with each other at a molecular level. Our simulation techniques are being used to capture information about structural correlation functions, molecular diffusivity, as well as an explicit accounting of the balance of van der Waals and electrostatic interactions in the system. Also, due to the porous nature of our materials, we also provide quantitative information about the fractional free volume (FFV), surface area, and pore size distribution.2 These properties can provide useful screening information for predicting gas adsorption/separation performance, and this is being verified by directly simulating gas adsorption isotherms with grand canonical Monte Carlo (GCMC) simulations. Our simulations are being rigorously benchmarked against the on-going experimental investigations, and this will provide essential information for future experimental and computational design of highly selective membrane materials.
REFERENCES
- Li, P.; Paul, D.; Chung, T.-S., High performance membranes based on ionic liquid polymers for CO2 separation from the flue gas. Green Chem. 2012, 14, 1052-1063.
- Abedini, A.; Crabtree, E.; Bara, J. E.; Turner, C. H., Molecular Simulation of Ionic Polyimides and Composites with Ionic Liquids as Gas-Separation Membranes. Langmuir 2017, 33, 11377-11389.