Date published: 2026-4-3

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Lanthanum(III) oxide (CAS 1312-81-8)

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Alternate Names:
LANTHANUM OXIDE
Application:
Lanthanum(III) oxide is a precursor to LAMOX fast ion conductors
CAS Number:
1312-81-8
Purity:
≥99%
Molecular Weight:
325.81
Molecular Formula:
La2O3
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(III) oxide is a compound that plays a significant role in various fields of materials science and chemistry. It is widely used as a catalyst and a catalyst support material in a range of chemical reactions due to its high thermal stability and ability to withstand corrosive environments. In ceramics, lanthanum(III) oxide is used to improve the physical properties of the ceramic materials, such as their strength and optical characteristics. The compound is also integral to the manufacturing of optical glasses, where it serves to enhance the refractive index and resistance to alkali. Additionally, lanthanum(III) oxide is a starting material for the production of other lanthanum compounds and is utilized in the electronics industry in the development of advanced battery technologies, particularly in nickel-metal hydride batteries.


Lanthanum(III) oxide (CAS 1312-81-8) References

  1. Comparative assessment of essential and heavy metals in fruits from different geographical origins.  |  Grembecka, M. and Szefer, P. 2013. Environ Monit Assess. 185: 9139-60. PMID: 23695079
  2. Monitoring of essential and heavy metals in green tea from different geographical origins.  |  Brzezicha-Cirocka, J., et al. 2016. Environ Monit Assess. 188: 183. PMID: 26899031
  3. Analytical Assessment of Bio- and Toxic Elements Distribution in Pu-erh and Fruit Teas in View of Chemometric Approach.  |  Brzezicha-Cirocka, J., et al. 2016. Biol Trace Elem Res. 174: 240-250. PMID: 27038620
  4. Mechanochemical conversion of brominated POPs into useful oxybromides: a greener approach.  |  Cagnetta, G., et al. 2016. Sci Rep. 6: 28394. PMID: 27325373
  5. Voltammetric Determination of Anethole on La2O3/CPE and BDDE.  |  Kowalcze, M., et al. 2018. J Anal Methods Chem. 2018: 2158407. PMID: 29675284
  6. Tribological Properties of Mo-Si-B Alloys Doped with La2O3 and Tested at 293-1173 K.  |  Li, W., et al. 2019. Materials (Basel). 12: PMID: 31234574
  7. La(OH)3 nanoparticles immobilized on Fe3O4@chitosan composites as novel magnetic nanocatalysts for sonochemical oxidation of benzyl alcohol to benzaldehyde.  |  Javidfar, F., et al. 2021. RSC Adv. 11: 35988-35993. PMID: 35492745
  8. Progress and Recent Strategies in the Synthesis and Catalytic Applications of Perovskites Based on Lanthanum and Aluminum.  |  Muñoz, HJ., et al. 2022. Materials (Basel). 15: PMID: 35591622
  9. NIR luminescence lifetime nanothermometry based on phonon assisted Yb3+-Nd3+ energy transfer.  |  Maciejewska, K., et al. 2021. Nanoscale Adv. 3: 4918-4925. PMID: 36132339
  10. Influence of Lanthanum Precursor on the Activity of Nickel Catalysts in the Mixed-Methane Reforming Process.  |  Zakrzewski, M., et al. 2023. Int J Mol Sci. 24: PMID: 36674490
  11. Thermoanalytical and X-ray Diffraction Studies on the Phase Transition of the Calcium-Substituted La2Mo2O9 System.  |  Žalga, A. and Gaidamavičienė, G. 2023. Materials (Basel). 16: PMID: 36676550
  12. Quality characteristics of green Tea's infusion as influenced by brands and types of brewing water.  |  Tan, HL., et al. 2023. Heliyon. 9: e12638. PMID: 36816296
  13. Structural and optical properties of Mg-substituted LaFeO3 nanoparticles prepared by a sol-gel method  |  D Triyono, U Hanifah, H Laysandra. 2020. Results in Physics. 16: 102995.

Ordering Information

Product NameCatalog #UNITPriceQtyFAVORITES

Lanthanum(III) oxide, 50 g

sc-250234
50 g
$68.00