Date published: 2026-8-31

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Vanadium(III) oxide (CAS 1314-34-7)

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CAS Number:
1314-34-7
Molecular Weight:
149.88
Molecular Formula:
V2O3
For Research Use Only. Not Intended for Diagnostic or Therapeutic Use.
* Refer to Certificate of Analysis for lot specific data.

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Vanadium(III) oxide is an essential compound composed of vanadium and oxygen. It manifests as a yellow-brown crystalline solid, characterized by a melting point of 740°C. Esteemed as one of vanadium′s significant compounds, it holds a broad spectrum of applications in both industry and research. Vanadium(III) oxide finds utility in ceramic and glass production, paint formulation, and as a catalyst facilitating various chemical reactions. Furthermore, it serves as a pigment in paints and inks, contributes to electrode and battery manufacturing.


Vanadium(III) oxide (CAS 1314-34-7) References

  1. Chromosomal damage induced by vanadium oxides in human peripheral lymphocytes.  |  Rodríguez-Mercado, JJ., et al. 2010. Drug Chem Toxicol. 33: 97-102. PMID: 20001663
  2. DNA damage induction in human cells exposed to vanadium oxides in vitro.  |  Rodríguez-Mercado, JJ., et al. 2011. Toxicol In Vitro. 25: 1996-2002. PMID: 21803147
  3. Premature chromatid separation and altered proliferation of human leukocytes treated with vanadium (III) oxide.  |  Mateos-Nava, RA., et al. 2017. Drug Chem Toxicol. 40: 457-462. PMID: 27936973
  4. Composites of Vanadium (III) Oxide (V2O3) Incorporating with Amorphous C as Pt-Free Counter Electrodes for Low-Cost and High-Performance Dye-Sensitized Solar Cells.  |  Wu, K., et al. 2021. ACS Omega. 6: 11183-11191. PMID: 34056273
  5. Synthesis of Phase-Pure Thermochromic VO2 (M1).  |  Mamakhel, A., et al. 2022. Inorg Chem. 61: 8760-8766. PMID: 35649247
  6. Cobalt-Carbon nanotubes supported on V2O3 nanorods as sulfur hosts for High-performance Lithium-Sulfur batteries.  |  Dan, J., et al. 2023. J Colloid Interface Sci. 640: 877-889. PMID: 36907148
  7. Polymer-pyrolysis assisted synthesis of vanadium trioxide and carbon nanocomposites as high performance anode materials for lithium-ion batteries  |  Dong, Y., Ma, R., Hu, M., Cheng, H., Lee, J. M., Li, Y. Y., & Zapien, J. A. 2014. Journal of Power Sources. 261: 184-187.
  8. Preparation of vanadium nitride by magnesiothermic reduction of V 2 O 3 in nitrogen atmosphere  |  Wu, Y. D., Zhang, G. H., & Chou, K. C. 2018. Metallurgical and Materials Transactions B. 49: 3570-3579.
  9. Vanadium trioxide nanowire arrays as a cathode material for lithium-ion battery  |  Hua, K., Li, X., Fang, D., Bao, R., Yi, J., Luo, Z.,.. & Hu, J. 2018. Ceramics International. 44(10): 11307-11313.
  10. In situ lattice tunnel distortion of vanadium trioxide for enhancing zinc ion storage  |  Ding, J., Zheng, H., Gao, H., Liu, Q., Hu, Z., Han, L.,.. & Chou, S. 2021. Advanced Energy Materials. 11(26): 2100973.
  11. Vanadium trioxide mediated peroxymonosulfate for fast metronidazole oxidation: Stepwise oxidation of vanadium for donating electrons  |  Shen, J., Cheng, F., Chen, Y., Li, Z., Liu, Y., Yuan, Y.,.. & Zhang, Y. 2022. Separation and Purification Technology. 298: 121595.
  12. In situ incorporation of highly dispersed nickel and vanadium trioxide nanoparticles in nanoporous carbon for the hydrogen storage performance enhancement of magnesium hydride  |  Lan, Z., Wen, X., Zeng, L., Luo, Z., Liang, H., Shi, W.,.. & Guo, J. 2022. Chemical Engineering Journal. 446: 137261.
  13. Vanadium acid zinc induced by electrochemical self-optimization of oxygen-defect-rich vanadium trioxide with dual-types of carbon hybridization for accelerating zinc storage dynamics  |  Yang, S., Yuan, G., Qiao, W., Bai, J., Wang, G., & Yan, J. 2022. Electrochimica Acta. 426: 140753.

Ordering Information

Product NameCatalog #UNITPriceQtyFAVORITES

Vanadium(III) oxide, 50 g

sc-251418
50 g
$72.00

Vanadium(III) oxide, 100 g

sc-251418A
100 g
$228.00