Date published: 2026-8-4

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Lanthanum chromite (CAS 12017-94-6)

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CAS Number:
12017-94-6
Molecular Weight:
238.90
Molecular Formula:
LaCrO3
For Research Use Only. Not Intended for Diagnostic or Therapeutic Use.
* Refer to Certificate of Analysis for lot specific data.

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Lanthanum chromite has several interesting properties that make it useful in various applications. It exhibits high-temperature stability, excellent electrical conductivity, and good chemical compatibility with other materials. These characteristics make it particularly valuable in the field of solid oxide fuel cells (SOFCs) and other energy conversion devices. In solid oxide fuel cells, lanthanum chromite is used as a cathode material. The cathode is the electrode where oxygen reduction takes place during the cell′s operation. Lanthanum chromite acts as a catalyst, facilitating the oxygen reduction reaction and enhancing the efficiency of the fuel cell.


Lanthanum chromite (CAS 12017-94-6) References

  1. Investigation of La1-xSrxCrO3-∂ (x ~ 0.1) as Membrane for Hydrogen Production.  |  Larring, Y., et al. 2012. Membranes (Basel). 2: 665-86. PMID: 24958299
  2. Preparation and Properties of (YCa)(TiMn)O3-d Ceramics Interconnect of Solid Oxide Fuel Cells.  |  Liou, YC., et al. 2015. Materials (Basel). 8: 4239-4248. PMID: 28793436
  3. Weakly spin-dependent band structures of antiferromagnetic perovskite LaMO3 (M  =  Cr, Mn, Fe).  |  Okugawa, T., et al. 2018. J Phys Condens Matter. 30: 075502. PMID: 29189206
  4. Preparation and Structural Characterization of Complex Oxide Eutectic Precursors from Polymer-Salt Xerogels Obtained by Microwave-Assisted Drying.  |  Vartanyan, M., et al. 2020. Materials (Basel). 13: PMID: 32290452
  5. Perovskite Chromite With In-Situ Assembled Ni-Co Nano-Alloys: A Potential Bifunctional Electrode Catalyst for Solid Oxide Cells.  |  Li, Z., et al. 2020. Front Chem. 8: 595608. PMID: 33598448
  6. Direct Measurement of Oxygen Mass Transport at the Nanoscale.  |  Baiutti, F., et al. 2021. Adv Mater. 33: e2105622. PMID: 34611954
  7. Porous Nanostructured Gadolinium Aluminate for High-Sensitivity Humidity Sensors.  |  Doroftei, C. and Leontie, L. 2021. Materials (Basel). 14: PMID: 34832502
  8. Thermochemical Mechanism of Optimized Lanthanum Chromite Heaters for High-Pressure and High-Temperature Experiments.  |  Xia, T., et al. 2022. ACS Appl Mater Interfaces. 14: 32244-32252. PMID: 35792079
  9. Structure and Spectral Luminescence Properties of (ZrO2)0.909(Y2O3)0.09(Eu2O3)0.001 Ceramics Synthesized by Uniaxial Compaction and Slip Casting.  |  Borik, M., et al. 2022. Materials (Basel). 15: PMID: 36363318
  10. Effect of Steam to Carbon Dioxide Ratio on the Performance of a Solid Oxide Cell for H2O/CO2 Co-Electrolysis.  |  Bimpiri, N., et al. 2023. Nanomaterials (Basel). 13: PMID: 36678051
  11. Structure and Properties of Porous Ti3AlC2-Doped Al2O3 Composites Obtained by Slip Casting Method for Membrane Application.  |  Kashkarov, E., et al. 2023. Materials (Basel). 16: PMID: 36837167

Ordering Information

Product NameCatalog #UNITPriceQtyFAVORITES

Lanthanum chromite, 10 g

sc-269308
10 g
$85.00