Date published: 2026-4-12

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Praseodymium(III) oxide (CAS 12036-32-7)

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CAS Number:
12036-32-7
Purity:
>99%
Molecular Weight:
329.81
Molecular Formula:
Pr2O3
For Research Use Only. Not Intended for Diagnostic or Therapeutic Use.
* Refer to Certificate of Analysis for lot specific data.

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Praseodymium(III) oxide is a compound that functions as a catalyst in various chemical reactions. It interacts with other substances by facilitating the conversion of reactants into products through its surface properties. Praseodymium(Iii) Oxide acts as a promoter in the synthesis of organic compounds, enhancing the efficiency of the reaction by providing a suitable environment for the desired chemical transformations to occur. Praseodymium(III) oxide also serves as a stabilizer in certain processes, preventing undesired side reactions and promoting the formation of specific products. Its mechanism of action involves the interaction of its surface with the reactants, leading to the modification of their chemical bonds and the promotion of the desired reaction pathways. Praseodymium(Iii) Oxide′s functional role in experimental applications involves its ability to influence the course of chemical reactions, making it a component in various development activities.


Praseodymium(III) oxide (CAS 12036-32-7) References

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  2. Structural and electrochemical characterization of carbon supported Pt-Pr catalysts for direct ethanol fuel cells prepared using a modified formic acid method in a CO atmosphere.  |  Corradini, PG., et al. 2013. Phys Chem Chem Phys. 15: 11730-9. PMID: 23752757
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  4. Enhanced Visible Light Activity of Pr-TiO₂ Nanocatalyst in the Degradation of Dyes: Effect of Pr Doping and TiO₂ Morphology.  |  Ramya, R., et al. 2019. J Nanosci Nanotechnol. 19: 3971-3981. PMID: 30764958
  5. Phase Equilibria in Systems Involving the Rare-Earth Oxides. Part I. Polymorphism of the Oxides of the Trivalent Rare-Earth Ions.  |  Roth, RS. and Schneider, SJ. 1960. J Res Natl Bur Stand A Phys Chem. 64A: 309-316. PMID: 32196170
  6. Assessment of PBE+U and HSE06 methods and determination of optimal parameter U for the structural and energetic properties of rare earth oxides.  |  Li, S., et al. 2020. J Chem Phys. 153: 164710. PMID: 33138436
  7. Strength enhancement of concrete using incinerated agricultural waste as supplementary cement materials.  |  Manan, TSBA., et al. 2021. Sci Rep. 11: 12722. PMID: 34135374
  8. High coercivity Pr2Fe14B magnetic nanoparticles by a mechanochemical method.  |  Shang, X., et al. 2021. RSC Adv. 11: 12315-12320. PMID: 35423750
  9. Unraveling the microstructural and optoelectronic properties of solution-processed Pr-doped SrSnO3 perovskite oxide thin films.  |  Shaili, H., et al. 2021. RSC Adv. 11: 37019-37028. PMID: 35496399
  10. The Effect of Pr Doping Contents on the Structural, Microstructure and Dielectric Properties of BaBi2Nb2O9 Aurivillius Ceramics.  |  Rerak, M., et al. 2022. Materials (Basel). 15: PMID: 36013925
  11. Enhancement of Optical Telecommunication Bands: Pr3+-Doped Halide Phosphate Glasses Display Broadband NIR Photoluminescence Emission.  |  Charfi, B., et al. 2022. Materials (Basel). 15: PMID: 36233860
  12. Design Principles of Responsive Relaxometric 19F Contrast Agents: Evaluation from the Point of View of Relaxation Theory and Experimental Data.  |  Zalewski, M., et al. 2022. Inorg Chem. 61: 19524-19542. PMID: 36384024
  13. Identification of Nano-Metal Oxides That Can Be Synthesized by Precipitation-Calcination Method Reacting Their Chloride Solutions with NaOH Solution and Their Application for Carbon Dioxide Capture from Air-A Thermodynamic Analysis.  |  Khine, EE. and Kaptay, G. 2023. Materials (Basel). 16: PMID: 36676513
  14. Praseodymium 3d- and 4d-core photoemission spectra of Pr2O3.  |  Ogasawara, H., et al. 1991. Phys Rev B Condens Matter. 44: 5465-5469. PMID: 9998378

Ordering Information

Product NameCatalog #UNITPriceQtyFAVORITES

Praseodymium(III) oxide, 10 g

sc-280020
10 g
$129.00