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1314-62-1 molecular structure
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[(dioxovanadio)oxy]dioxovanadium

ChemBase ID: 130124
Molecular Formular: O5V2
Molecular Mass: 181.88
Monoisotopic Mass: 181.8624921
SMILES and InChIs

SMILES:
O=[V](=O)O[V](=O)=O
Canonical SMILES:
O=[V](=O)O[V](=O)=O
InChI:
InChI=1S/5O.2V
InChIKey:
GNTDGMZSJNCJKK-UHFFFAOYSA-N

Cite this record

CBID:130124 http://www.chembase.cn/molecule-130124.html

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NAMES AND DATABASE IDS

NAMES AND DATABASE IDS

Names Database IDs
IUPAC name
[(dioxovanadio)oxy]dioxovanadium
IUPAC Traditional name
vanadium(V) oxide
Synonyms
Vanadium(V) oxide, Puratronic®
Vanadic acid anhydride
vanadium
Vanadium pentoxide
Vanadic anhydride
Divanadium pentoxide
Vanadium(V) oxide
Divanadium pentaoxide
Pentaoxodivanadium
Vandia
Vanadium(V) oxide
氧化钒(V), Puratronic®
氧化钒(V)
五氧化二钒
CAS Number
1314-62-1
EC Number
215-239-8
MDL Number
MFCD00011457
Merck Index
149921
PubChem SID
162224409
24852963
24852295
24853404
PubChem CID
14814
CHEBI ID
30045
Chemspider ID
14130
KEGG ID
C19308
Wikipedia Title
Vanadium(V)_oxide

CALCULATED PROPERTIES

CALCULATED PROPERTIES

JChem
H Acceptors H Donor
LogD (pH = 5.5) -1.1344  LogD (pH = 7.4) -1.1344 
Log P -1.1344  Molar Refractivity 7.1218 cm3
Polarizability 9.708787 Å3 Polar Surface Area 77.51 Å2
Rotatable Bonds Lipinski's Rule of Five true 

PROPERTIES

PROPERTIES

Physical Property Safety Information Product Information Bioassay(PubChem)
Solubility
0.8 g/L (20 °C) in water expand Show data source
Slightly soluble in water. Soluble in acids and alkalies expand Show data source
Apperance
-10 Mesh expand Show data source
-22 Mesh Powder expand Show data source
3-12mm Pieces expand Show data source
powder expand Show data source
Powder expand Show data source
Yellow solid expand Show data source
Melting Point
690 °C(lit.) expand Show data source
690°C expand Show data source
690°C expand Show data source
Boiling Point
1750°C (decomp.) expand Show data source
1750°C dec. expand Show data source
Flash Point
Non-flammable expand Show data source
Density
3.35 g/mL at 25 °C(lit.) expand Show data source
3.357 expand Show data source
3.357 g/cm3 expand Show data source
RTECS
YW2125000 expand Show data source
YW2450000 expand Show data source
European Hazard Symbols
Dangerous for the environment (N) expand Show data source
Harmful (Xn) expand Show data source
Irritant (Xi) expand Show data source
Muta. Cat. 3 expand Show data source
Nature polluting Nature polluting (N) expand Show data source
Repr. Cat. 3 expand Show data source
Toxic Toxic (T) expand Show data source
Toxic (T) expand Show data source
Harmful Harmful (Xn) expand Show data source
UN Number
2862 expand Show data source
UN2862 expand Show data source
MSDS Link
Download expand Show data source
Download expand Show data source
Download expand Show data source
Download expand Show data source
Download expand Show data source
German water hazard class
3 expand Show data source
Hazard Class
6.1 expand Show data source
Packing Group
3 expand Show data source
III expand Show data source
Risk Statements
20/22-37-48/23-51/53-63-68 expand Show data source
20/22-37-48/23-68-51/53-63 expand Show data source
63-20/22-37-48/23-51/53-68 expand Show data source
R20/22, R37, R48/23, R51/53, R63, R68 expand Show data source
Safety Statements
36/37-38-45-61 expand Show data source
S1/2, S36/37, S38, S45, S61 expand Show data source
TSCA Listed
expand Show data source
EU Index
023-001-00-8 expand Show data source
GHS Pictograms
GHS07 expand Show data source
GHS07 : Acute Tox.4; STOT SE 3 expand Show data source
GHS08 expand Show data source
GHS08 : Muta. 2; Repr. 2; STOT RE 1 expand Show data source
GHS09 expand Show data source
GHS09 : Aquatic Chronic 2 expand Show data source
GHS Signal Word
DANGER expand Show data source
Danger expand Show data source
NFPA704
NFPA 704 diagram
0
3
0
expand Show data source
LD50
10 mg/kg expand Show data source
GHS Hazard statements
341, 361, 372, 332, 302, 335, 411 expand Show data source
H302-H332-H335-H341-H361d-H372-H411 expand Show data source
H372-H341-H361-H302-H332-H335-H411 expand Show data source
GHS Precautionary statements
P260-P261-P281-P304+P340-P405-P501A expand Show data source
P261-P273-P281-P314 expand Show data source
Personal Protective Equipment
Eyeshields, Faceshields, full-face particle respirator type N100 (US), Gloves, respirator cartridge type N100 (US), type P1 (EN143) respirator filter, type P3 (EN 143) respirator cartridges expand Show data source
RID/ADR
UN 2862 6.1/PG 3 expand Show data source
Purity
≥98% expand Show data source
≥99% expand Show data source
≥99.6% trace metals basis expand Show data source
99.2% expand Show data source
99.6% min expand Show data source
99.9% (metals basis) expand Show data source
99.99% (metals basis) expand Show data source
99.99% trace metals basis expand Show data source
Grade
puriss. expand Show data source
Compostion
V2O5 expand Show data source
Impurities
≤0.02% heavy metals (as Pb) expand Show data source
Cation Traces
Fe: ≤200 mg/kg expand Show data source
Antion Traces
chloride (Cl-): ≤200 mg/kg expand Show data source
sulfate (SO42-): ≤500 mg/kg expand Show data source
Loss on Drying
≤0.5% loss on ignition expand Show data source
Linear Formula
V2O5 expand Show data source

DETAILS

DETAILS

Wikipedia Wikipedia Sigma Aldrich Sigma Aldrich
Sigma Aldrich - 223794 external link
Frequently Asked Questions
Live Chat and Frequently Asked Questions are available for this Product.
Packaging
100, 500 g in glass bottle
Application
Selective ammoxidation catalysts for such reactions as conversion of toluene to benzonitrile or propylene to acrylonitrile were prepared by a sol-gel method from V2O5, Sb2O3 and high purity hydrogen peroxide.1 Preparation of new stabilized, oxide ion-conducting, bismuth vanadate phases by a microwave assisted method, fromV2O5, Bi2O3 and other solid oxides, was reported. These ceramics show promise in solid oxide fuel cells, water-vapor electrolyzers and oxygen sensors.2
Sigma Aldrich - 204854 external link
Packaging
1, 5, 25 g in glass bottle
Application
Selective ammoxidation catalysts for such reactions as conversion of toluene to benzonitrile or propylene to acrylonitrile were prepared by a sol-gel method from V2O5, Sb2O3 and high purity hydrogen peroxide.1 Preparation of new stabilized, oxide ion-conducting, bismuth vanadate phases by a microwave assisted method, fromV2O5, Bi2O3 and other solid oxides, was reported. These ceramics show promise in solid oxide fuel cells, water-vapor electrolyzers and oxygen sensors.2
Sigma Aldrich - 221899 external link
Packaging
1 kg in glass bottle
5, 250 g in glass bottle

REFERENCES

REFERENCES

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PATENTS

PATENTS

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INTERNET

INTERNET

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