Abstract
Using synchrotron X-ray powder diffraction, the structure of a co-crystal between benzene and ethane formed in situ at cryogenic conditions has been determined, and validated using dispersion-corrected density functional theory calculations. The structure comprises a lattice of benzene molecules hosting ethane molecules within channels. Similarity between the intermolecular interactions found in the co-crystal and in pure benzene indicate that the C - H⋯π network of benzene is maintained in the co-crystal, however, this expands to accommodate the guest ethane molecules. The co-crystal has a 3:1 benzene:ethane stoichiometry and is described in the space group with a = 15.977(1)Å and c = 5.581(1)Å at 90K, with a density of 1.067gcm-3. The conditions under which this co-crystal forms identify it is a potential that forms from evaporation of Saturn's moon Titan's lakes, an evaporite material.
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Maynard-Casely, H. E., Hodyss, R., Cable, M. L., Vu, T. H., & Rahm, M. (2016). A co-crystal between benzene and ethane: A potential evaporite material for Saturn’s moon Titan. IUCrJ, 3, 192–199. https://doi.org/10.1107/S2052252516002815
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