4.6 Article

The structure of liquid thiophene from total neutron scattering

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PHYSICAL CHEMISTRY CHEMICAL PHYSICS
卷 25, 期 37, 页码 25157-25165

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ROYAL SOC CHEMISTRY
DOI: 10.1039/d3cp03932c

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The structure of pure liquid thiophene is revealed using a combination of total neutron scattering experiments with isotopic substitution and molecular simulations. Three principle local structural motifs are observed within the first solvation shell of the liquid, both in plane and out of the plane of the thiophene ring.
The structure of pure liquid thiophene is revealed by using a combination of total neutron scattering experiments with isotopic substitution and molecular simulations via the next generation empirical potential refinement software, Dissolve. In the liquid, thiophene presents three principle local structural motifs within the first solvation shell, in plane and out of the plane of the thiophene ring. Firstly, above/below the ring plane thiophenes present a single H towards the & pi; cloud, due to a combination of electrostatic and dispersion interactions. Secondly, around the ring plane, perpendicular thiophene molecules find 5 preferred sites driven by bifurcated C-HMIDLINE HORIZONTAL ELLIPSISS interactions, showing that hydrogen-sulfur bonding prevails over the charge asymmetry created by the heteroatom. Finally, parallel thiophenes sit above and below the ring, excluded from directly above the ring center and above the sulfur. The structure of pure liquid thiophene is revealed by using a combination of total neutron scattering experiments with isotopic substitution and molecular simulations via the next generation empirical potential refinement software, Dissolve.

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