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Title

Switching Lead for Tin in PbHfO<sub>3</sub>: Noncubic Structure of SnHfO<sub>3</sub>**.

Authors

Gabilondo, Eric A.; Newell, Ryan J.; Broughton, Rachel; Koldemir, Aylin; Pöttgen, Rainer; Jones, Jacob L.; Maggard, Paul A.

Abstract

The removal of lead from commercialized perovskite‐oxide‐based piezoceramics has been a recent major topic in materials research owing to legislation in many countries. In this regard, Sn(II)‐perovskite oxides have garnered keen interest due to their predicted large spontaneous electric polarizations and isoelectronic nature for substitution of Pb(II) cations. However, they have not been considered synthesizable owing to their high metastability. Herein, the perovskite lead hafnate, i.e., PbHfO3 in space group Pbam, is shown to react with SnClF at a low temperature of 300 °C, and resulting in the first complete Sn(II)‐for‐Pb(II) substitution, i.e. SnHfO3. During this topotactic transformation, a high purity and crystallinity is conserved with Pbam symmetry, as confirmed by X‐ray and electron diffraction, elemental analysis, and 119Sn Mössbauer spectroscopy. In situ diffraction shows SnHfO3 also possesses reversible phase transformations and is potentially polar between ≈130–200 °C. This so‐called 'de‐leadification' is thus shown to represent a highly useful strategy to fully remove lead from perovskite‐oxide‐based piezoceramics and opening the door to new explorations of polar and antipolar Sn(II)‐oxide materials.

Subjects

REVERSIBLE phase transitions; POLARIZATION (Electricity); LEAD; POLAR exploration; MOSSBAUER spectroscopy; TIN

Publication

Angewandte Chemie, 2024, Vol 136, Issue 4, p1

ISSN

0044-8249

Publication type

Academic Journal

DOI

10.1002/ange.202312130

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