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Crystal Chemistry and Phonon Heat Capacity in Quaternary Honeycomb Delafossites: Cu[Li1/3Sn2/3]O2 and Cu[Na1/3Sn2/3]O2.
Abramchuk, Mykola; Lebedev, Oleg I; Hellman, Olle; Bahrami, Faranak; Mordvinova, Natalia E; Krizan, Jason W; Metz, Kenneth R; Broido, David; Tafti, Fazel.
Afiliação
  • Abramchuk M; Department of Physics , Boston College , Chestnut Hill , Massachusetts 02467 , United States.
  • Lebedev OI; Laboratorie CRISMAT , ENSICAEN-CNRS, UMR6508 , 14050 Caen , France.
  • Hellman O; Department of Physics , Boston College , Chestnut Hill , Massachusetts 02467 , United States.
  • Bahrami F; Division of Engineering and Applied Science , California Institute of Technology , Pasadena , California 91125 , United States.
  • Mordvinova NE; Department of Physics , Boston College , Chestnut Hill , Massachusetts 02467 , United States.
  • Krizan JW; Laboratorie CRISMAT , ENSICAEN-CNRS, UMR6508 , 14050 Caen , France.
  • Metz KR; Department of Physics , Boston College , Chestnut Hill , Massachusetts 02467 , United States.
  • Broido D; Department of Chemistry , Boston College , Chestnut Hill , Massachusetts 02467 , United States.
  • Tafti F; Department of Physics , Boston College , Chestnut Hill , Massachusetts 02467 , United States.
Inorg Chem ; 57(20): 12709-12717, 2018 Oct 15.
Article em En | MEDLINE | ID: mdl-30272966
ABSTRACT
This work presents an integrated approach to study the crystal chemistry and phonon heat capacity of complex layered oxides. Two quaternary delafossites are synthesized from ternary parent compounds and copper monohalides via a topochemical exchange reaction that preserves the honeycomb ordering of the parent structures. For each compound, Rietveld refinement of the powder X-ray diffraction patterns is examined in both monoclinic C2/ c and rhombohedral R3̅ m space groups. Honeycomb ordering occurs only in the monoclinic space group. Bragg peaks associated with honeycomb ordering acquire an asymmetric broadening known as the Warren line shape that is commonly observed in layered structures with stacking disorder. Detailed TEM analysis confirms honeycomb ordering within each layer in both title compounds and establishes a twinning between the adjacent layers instead of the more conventional shifting or skipping stacking faults. The structural model is then used to calculate phonon dispersions and heat capacity from first principles. In both compounds, the calculated heat capacity accurately describes the experimental data. The integrated approach presented here offers a platform to carefully analyze the phonon heat capacity in complex oxides where the crystal structure can produce magnetic frustration. Isolating phonon contribution from total heat capacity is a necessary and challenging step toward a quantitative study of spin liquid materials with exotic magnetic excitations such as spinons and Majorana fermions. A quantitative understanding of phonon density of states based on crystal chemistry as presented here also paves the way toward higher efficiency thermoelectric materials.

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Revista: Inorg Chem Ano de publicação: 2018 Tipo de documento: Article País de afiliação: Estados Unidos

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Revista: Inorg Chem Ano de publicação: 2018 Tipo de documento: Article País de afiliação: Estados Unidos