Date published: 2026-5-2

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Vanadium(V) oxytriisopropoxide (CAS 5588-84-1)

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Alternate Names:
Triisopropoxyvanadium(V) oxide, VTIP, Vanadium(V) trisisopropoxide oxide
CAS Number:
5588-84-1
Molecular Weight:
244.20
Molecular Formula:
OV(OCH(CH3)2)3
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(V) oxytriisopropoxide is a compound that functions as a catalyst in various chemical reactions. Its mechanism of action involves facilitating the conversion of organic substrates by participating in oxidation and reduction processes. Vanadium(V) Oxytriisopropoxide is known to interact with specific functional groups within the molecules, promoting the desired chemical transformations. Vanadium(V) oxytriisopropoxide acts as a mediator in the synthesis of organic compounds, enabling the formation of new chemical bonds and the modification of molecular structures. Vanadium(V) Oxytriisopropoxide′s mechanism of action at the molecular level involves the coordination of vanadium with the reactants, leading to the activation of specific chemical bonds and the subsequent formation of the desired products.


Vanadium(V) oxytriisopropoxide (CAS 5588-84-1) References

  1. Interplay between the structural and magnetic probes in the elucidation of the structure of a novel 2D layered [V4O4(OH)2(O2CC6H4CO2)4]·DMF.  |  Djerdj, I., et al. 2012. Dalton Trans. 41: 581-9. PMID: 22042096
  2. Template-free bottom-up synthesis of yolk-shell vanadium oxide as high performance cathode for lithium ion batteries.  |  Pang, H., et al. 2013. Chem Commun (Camb). 49: 1536-8. PMID: 23322132
  3. Mesoporous Hybrids of Reduced Graphene Oxide and Vanadium Pentoxide for Enhanced Performance in Lithium-Ion Batteries and Electrochemical Capacitors.  |  Pandey, GP., et al. 2016. ACS Appl Mater Interfaces. 8: 9200-10. PMID: 27010675
  4. Atomic Layer Deposition of Bismuth Vanadates for Solar Energy Materials.  |  Stefik, M. 2016. ChemSusChem. 9: 1727-35. PMID: 27246652
  5. 'Breathing' Motion of a Modulable Molecular Cavity.  |  Zhang, D., et al. 2017. Chemistry. 23: 6495-6498. PMID: 28158931
  6. Tailored oxido-vanadium(V) cage complexes for selective sulfoxidation in confined spaces.  |  Zhang, D., et al. 2017. Chem Sci. 8: 789-794. PMID: 28451228
  7. Thermally Stable Solution Processed Vanadium Oxide as a Hole Extraction Layer in Organic Solar Cells.  |  Alsulami, A., et al. 2016. Materials (Basel). 9: PMID: 28773356
  8. Construction of Complex Co3 O4 @Co3 V2 O8 Hollow Structures from Metal-Organic Frameworks with Enhanced Lithium Storage Properties.  |  Lu, Y., et al. 2018. Adv Mater. 30: PMID: 29171698
  9. Nanostructured Titania Templated by Natural Cellulose Substance: Effect of Vanadium-Doping on the Anatase-to-Rutile Phase Transformation.  |  Li, J. and Huang, J. 2018. J Nanosci Nanotechnol. 18: 1376-1383. PMID: 29448595
  10. Understanding the Synthesis of Supported Vanadium Oxide Catalysts Using Chemical Grafting.  |  Love, AM., et al. 2020. Chemistry. 26: 1052-1063. PMID: 31703149
  11. Geometric Optimization of Bismuth Vanadate Core-Shell Nanowire Photoanodes using Atomic Layer Deposition.  |  Bielinski, AR., et al. 2021. ACS Appl Mater Interfaces.. PMID: 34283562
  12. Enhancement of All-Polymer Solar Cells by Addition of a Chlorinated Polymer and Formation of an Energy Cascade in a Nonhalogenated Solvent.  |  Wang, H., et al. 2021. ACS Appl Mater Interfaces. 13: 58754-58762. PMID: 34871498
  13. SOMC grafting of vanadium oxytriisopropoxide (VO(O i Pr)3) on dehydroxylated silica; analysis of surface complexes and thermal restructuring mechanism.  |  Högerl, MP., et al. 2018. RSC Adv. 8: 20801-20808. PMID: 35542331

Ordering Information

Product NameCatalog #UNITPriceQtyFAVORITES

Vanadium(V) oxytriisopropoxide, 1 g

sc-253823
1 g
$42.00