Date published: 2025-9-17

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Barium zirconate (CAS 12009-21-1)

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Alternate Names:
Barium zirconium oxide
CAS Number:
12009-21-1
Molecular Weight:
276.55
Molecular Formula:
BaZrO3
For Research Use Only. Not Intended for Diagnostic or Therapeutic Use.
* Refer to Certificate of Analysis for lot specific data.

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Barium zirconate functions as a solid-state electrolyte in experimental applications. It demonstrates high ionic conductivity at elevated temperatures, making it suitable for use in fuel cells and other electrochemical devices. Barium zirconate′s mechanism of action involves facilitating the movement of oxygen ions through its crystal lattice, allowing for the efficient transfer of oxygen across the electrolyte. This property enables the compound to support the electrochemical reactions necessary for energy conversion processes. Barium zirconate exhibits stability and compatibility with other materials used in electrochemical devices, further enhancing its functional role in experimental setups. Its ability to enable the movement of oxygen ions without significant electronic conduction may be a promising candidate for use in various applications related to energy conversion and storage.


Barium zirconate (CAS 12009-21-1) References

  1. Photoluminescence of barium titanate and barium zirconate in multilayer disordered thin films at room temperature.  |  Moreira, ML., et al. 2008. J Phys Chem A. 112: 8938-42. PMID: 18593105
  2. Protons crossing triple phase boundaries based on a metal catalyst, Pd or Ni, and barium zirconate.  |  Malagoli, M., et al. 2013. Phys Chem Chem Phys. 15: 12525-9. PMID: 23775261
  3. Dielectric Properties and Switching Processes of Barium Titanate⁻Barium Zirconate Ferroelectric Superlattices.  |  Sidorkin, A., et al. 2018. Materials (Basel). 11: PMID: 30110967
  4. Graph analysis of proton conduction pathways in scandium-doped barium zirconate.  |  Gomez, MA., et al. 2021. J Chem Phys. 154: 074711. PMID: 33607902
  5. Effect of Alkaline Earth Metal on AZrOx (A = Mg, Sr, Ba) Memory Application.  |  Lee, KJ. and Wang, YH. 2021. Gels. 8: PMID: 35049555
  6. Influence of Low Sintering Temperature on BaCe0.2Zr0.6Y0.2O3-δ IT-SOFC Perovskite Electrolyte Synthesized by Co-Precipitation Method.  |  Rafique, M., et al. 2022. Materials (Basel). 15: PMID: 35629612
  7. A Review of Applications, Prospects, and Challenges of Proton-Conducting Zirconates in Electrochemical Hydrogen Devices.  |  Hossain, MK., et al. 2022. Nanomaterials (Basel). 12: PMID: 36296771
  8. Solid State Processing of BCZT Piezoceramics Using Ultra Low Synthesis and Sintering Temperatures.  |  Mureddu, M., et al. 2023. Materials (Basel). 16: PMID: 36769951
  9. Water uptake and energetics of the formation of barium zirconate based multicomponent oxides.  |  Mielewczyk-Gryń, A., et al. 2023. Phys Chem Chem Phys. 25: 9208-9215. PMID: 36919378
  10. Micro-shear bond strength of different calcium silicate materials to bulk-fill composite.  |  Falakaloğlu, S., et al. 2023. PeerJ. 11: e15183. PMID: 37013141
  11. Evaluation of dental pulp stem cells behavior after odontogenic differentiation induction by three different bioactive materials on two different scaffolds.  |  Ahmed, B., et al. 2023. BMC Oral Health. 23: 252. PMID: 37127635
  12. Effect of Different Protective Bases on pH Changes and Hydrogen Peroxide Microleakage During Intracoronal Bleaching.  |  Feiz, A., et al. 2023. Front Dent. 20: 14. PMID: 37312831

Ordering Information

Product NameCatalog #UNITPriceQtyFAVORITES

Barium zirconate, 250 g

sc-239280
250 g
$48.00