La2SrCr2O7F2: A Ruddlesden-Popper Oxyfluoride Containing Octahedrally Coordinated Cr(4+) Centers.

Inorg Chem

Department of Chemistry, Inorganic Chemistry Laboratory, University of Oxford, South Parks Road, Oxford OX1 3QR, United Kingdom.

Published: March 2016

AI Article Synopsis

  • The low-temperature fluorination of La2SrCr2O7 results in the formation of La2SrCr2O7F2 through a topochemical reaction that maintains the original structure.
  • The chromium centers in the newly formed compound preserve their octahedral coordination, which is typically achieved at high pressure, showcasing a new synthesis method at low temperatures.
  • La2SrCr2O7F2 exhibits antiferromagnetic properties below approximately 140 K, with implications discussed regarding the structure-property relationships of similar chromium oxide phases.

Article Abstract

The low-temperature fluorination of the n = 2 Ruddlesden-Popper phase La2SrCr2O7 yields La2SrCr2O7F2 via a topochemical fluorine insertion reaction. The structure-conserving nature of the fluorination reaction means that the chromium centers of the initial oxide phase retain an octahedral coordination environment in the fluorinated product, resulting in a material containing an extended array of apex-linked Cr(4+)O6 units. Typically materials containing networks of octahedrally coordinated Cr(4+) centers can only be prepared at high pressure; thus, the preparation of La2SrCr2O7F2 demonstrates that low-temperature topochemical reactions offer an alternative synthesis route to materials of this type. Neutron diffraction, magnetization, and μ(+)SR data indicate that La2SrCr2O7F2 undergoes a transition to an antiferromagnetic state below TN ≈ 140 K. The structure-property relations of this phase and other Cr(4+) oxide phases are discussed.

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Source
http://dx.doi.org/10.1021/acs.inorgchem.6b00114DOI Listing

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