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Solvation of Na? in the Sodide Solution, LiNa?10MeNH2.
Seel, Andrew G; Holzmann, Nicole; Imberti, Silvia; Bernasconi, Leonardo; Edwards, Peter P; Cullen, Patrick L; Howard, Christopher A; Skipper, Neal T.
Afiliação
  • Seel AG; Department of Physics and Astronomy , University College London , Gower Street , London WC1E 6BT , U.K.
  • Holzmann N; Department of Chemistry, Inorganic Chemistry Laboratory , University of Oxford , South Parks Road , Oxford OX1 3QR , U.K.
  • Edwards PP; Center for Research Computing , University of Pittsburgh , 4420 Bayard Street , Pittsburgh , Pennsylvania 15260 , United States.
  • Cullen PL; Department of Chemistry, Inorganic Chemistry Laboratory , University of Oxford , South Parks Road , Oxford OX1 3QR , U.K.
  • Howard CA; Department of Physics and Astronomy , University College London , Gower Street , London WC1E 6BT , U.K.
  • Skipper NT; Department of Physics and Astronomy , University College London , Gower Street , London WC1E 6BT , U.K.
J Phys Chem B ; 123(25): 5337-5342, 2019 06 27.
Article em En | MEDLINE | ID: mdl-31144816
ABSTRACT
Alkalides, the alkali metals in their ?1 oxidation state, represent some of the largest and most polarizable atomic species in condensed phases. This study determines the solvation environment around the sodide anion, Na?, in a system of co-solvated Li+. We present isotopically varied total neutron scattering experiments alongside empirical potential structure refinement and ab initio molecular dynamics simulations for the alkali?alkalide system, LiNa?10MeNH2. Both local coordination modes and the intermediate range liquid structure are determined, which demonstrate that distinct structural correlations between cation and anion in the liquid phase extend beyond 8.6 ?. Indeed, the local solvation around Na? is surprisingly well defined with strong solvent orientational order, in contrast to the classical description of alkalide anions not interacting with their environment. The ion-paired Li(MeNH2)4+?Na? species appears to be the dominant alkali?alkalide environment in these liquids, whereby Li+ and Na? share a MeNH2 molecule through the amine group in their primary solvation spheres.

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2019 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2019 Tipo de documento: Article