Leonidas Spyrogiannopoulos, L. Zubeir, George E. Romanos, J. Samios
Abstract
The behavior of CO 2 in [Hmim + ][TCM – ] was studied by using Gravimetric Absorption and Molecular Dynamics, with properties recorded up to 2 MPa. Among others, we focused on the previously unexplored structure and dynamics of the system. Results are discussed regarding the characteristics of the solution’s components, their mutual interactions, and the structure around CO 2 . Analysis revealed complex network-like microstructures formed by ions with cages hosting CO 2, whose formation depends on intermediate and greater pressure. CO 2 preferentially resides near the C01 site of the imidazolium cation ring, while locations at the COT cation tail end or outer TCM – sites are less favored. We found experimentally and through simulations that the diffusivity of CO 2 increases with pressure, primarily due to local structural changes around the CO 2 . Also, these effects are evident in the behavior of the predicted relevant translational, reorientational, and van Hove self-part correlation functions.
Citation format
SPYROGIANNOPOULOS, Leonidas, et al. Structural and dynamic properties of CO 2 in the room-temperature ionic liquid hmim + TCΜ – as a function of pressure and concentration: A combined experimental and molecular dynamics simulation study. INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH, 2026, 65(6): 3487–3506.