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Article
Clathrate BaNi2P4: An Interplay of Heat and Charge Transport Due to Strong Host-Guest Interactions
Ames Laboratory Accepted Manuscripts
  • Jian Wang, Iowa State University and Ames Laboratory
  • Juli-Anna Dolyniuk, University of California, Davis
  • Elizabeth Krenkel, Iowa State University and Ames Laboratory
  • Jennifer L. Niedziela, Oak Ridge National Laboratory and Duke University
  • Makariy A. Tanatar, Iowa State University and Ames Laboratory
  • Erik I. Timmons, Iowa State University and Ames Laboratory
  • Tyson Lanigan-Atkins, Duke University
  • Haidong Zhou, University of Tennessee, Knoxville
  • Yongqiang Cheng, Oak Ridge National Laboratory
  • Anibal J. Ramirez-Cuesta, Oak Ridge National Laboratory
  • Deborah L. Schlagel, Ames Laboratory
  • Udhara S. Kaluarachchi, Iowa State University
  • Lin-Lin Wang, Ames Laboratory
  • Sergey L. Bud’ko, Iowa State University and Ames Laboratory
  • Paul C. Canfield, Iowa State University and Ames Laboratory
  • Ruslan Prozorov, Iowa State University and Ames Laboratory
  • Olivier Delaire, Oak Ridge National Laboratory and Duke University
  • Kirill Kovnir, Iowa State University and Ames Laboratory
Publication Date
8-19-2020
Department
Ames Laboratory; Chemistry; Physics and Astronomy
OSTI ID+
1668270
Report Number
IS-J 10290
DOI
10.1021/acs.chemmater.0c02758
Journal Title
Chemistry of Materials
Abstract

Heat and charge transport properties of the metallic unconventional clathrate BaNi2P4, hosting Ba cations in oversized Ni8P16 cages, are investigated. A novel method of single-crystal growth was developed, yielding 2–3 mm sized crystals of BaNi2P4. We also developed a setup to accurately measure thermal conductivity and electrical resistivity of the synthesized single crystals in a wide temperature range avoiding crystal remounting. BaNi2P4 has a metallic temperature dependence of its electrical resistivity (decreasing with decreasing temperature) and manifests an unconventional T2 power law for 50 K < T < 300 K; below 50 K, the power-law exponent increases gradually such that below 10 K the power law is T5, a predicted but extremely rarely experimentally observed dependence for peculiar electron–phonon interactions. Electronic band structure calculations, consistent with measurements of de Haas–van Alphen oscillations, show large band dispersions with significant contributions of Ba orbitals to states near the Fermi level, which is atypical for clathrates. The thermal properties of BaNi2P4 were probed using a combination of variable-temperature single-crystal X-ray diffraction experiments, heat capacity measurements, first-principles phonon dispersion calculations, and inelastic neutron scattering measurements. BaNi2P4 exhibits significant hybridization of the Ba-guest and Ni–P-framework vibrational modes, which may be enhanced via the detected split of the Ba position, which results in strong Ba-framework interactions.

DOE Contract Number(s)
AC02-07CH11358; SC0008931; SC0001299; SC0019299
Language
en
Publisher
Iowa State University Digital Repository, Ames IA (United States)
Citation Information
Jian Wang, Juli-Anna Dolyniuk, Elizabeth Krenkel, Jennifer L. Niedziela, et al.. "Clathrate BaNi2P4: An Interplay of Heat and Charge Transport Due to Strong Host-Guest Interactions" Vol. 32 Iss. 18 (2020) p. 7932 - 7940
Available at: http://works.bepress.com/d_l_schlagel/146/