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1304-76-3 molecular structure
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[(oxobismuthanyl)oxy]bismuthanone

ChemBase ID: 126183
Molecular Formular: Bi2O3
Molecular Mass: 465.959
Monoisotopic Mass: 465.94553986
SMILES and InChIs

SMILES:
O=[Bi]O[Bi]=O
Canonical SMILES:
O=[Bi]O[Bi]=O
InChI:
InChI=1S/2Bi.3O
InChIKey:
WMWLMWRWZQELOS-UHFFFAOYSA-N

Cite this record

CBID:126183 http://www.chembase.cn/molecule-126183.html

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NAMES AND DATABASE IDS

NAMES AND DATABASE IDS

Names Database IDs
IUPAC name
[(oxobismuthanyl)oxy]bismuthanone
IUPAC Traditional name
bismuth(III) oxide
Synonyms
Dibismuth trioxide
Bismuth(III) oxide
Bismite
bismuth sesquioxide
Bismuth(III) oxide
三氧化二铋
氧化铋(III)
CAS Number
1304-76-3
EC Number
215-134-7
MDL Number
MFCD00003462
Merck Index
141273
PubChem SID
24852122
24882819
24853412
162220524
PubChem CID
14776
Chemspider ID
14093
Unique Ingredient Identifier
A6I4E79QF1
Wikipedia Title
Bismuth(III)_oxide

CALCULATED PROPERTIES

CALCULATED PROPERTIES

JChem
H Acceptors H Donor
LogD (pH = 5.5) -0.1316  LogD (pH = 7.4) -0.1316 
Log P -0.1316  Molar Refractivity 4.236 cm3
Polarizability 18.861319 Å3 Polar Surface Area 43.37 Å2
Rotatable Bonds Lipinski's Rule of Five true 

PROPERTIES

PROPERTIES

Physical Property Safety Information Product Information Bioassay(PubChem)
Solubility
insoluble in water expand Show data source
soluble in acids expand Show data source
Apperance
nanopowder expand Show data source
powder expand Show data source
Powder, typically <4 micron expand Show data source
spherical expand Show data source
yellow crystals or powder expand Show data source
Melting Point
817 °C, 1090 K, 1503 °F expand Show data source
817°C expand Show data source
Boiling Point
1890°C expand Show data source
ca 1890°C expand Show data source
Flash Point
non-flammable expand Show data source
Density
8.9 expand Show data source
8.90 g/cm3, solid expand Show data source
Odor
odorless expand Show data source
RTECS
EB2984460 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
Download expand Show data source
German water hazard class
2 expand Show data source
TSCA Listed
expand Show data source
NFPA704
NFPA 704 diagram
0
1
0
expand Show data source
GHS Hazard statements
H303 expand Show data source
GHS Precautionary statements
P312 expand Show data source
Personal Protective Equipment
dust mask type N95 (US), Eyeshields, Gloves expand Show data source
Purity
≥98.0% (KT) expand Show data source
≥99.5% (complexometric) expand Show data source
99.8% trace metals basis expand Show data source
99.9% trace metals basis expand Show data source
99.975% (metals basis) expand Show data source
99.99% expand Show data source
99.999% trace metals basis expand Show data source
Grade
purum expand Show data source
ReagentPlus® expand Show data source
Particle Size
10 μm expand Show data source
90-210 nm expand Show data source
Description
beta expand Show data source
Cation Traces
As: ≤5 mg/kg expand Show data source
Cu: ≤50 mg/kg expand Show data source
Fe: ≤100 mg/kg expand Show data source
Antion Traces
nitrate (NO3-): ≤500 mg/kg expand Show data source
Surface Area
BET surf. area 3.2-3.5 m2/g expand Show data source
Loss on Drying
≤0.2% loss on ignition expand Show data source
≤0.5% loss on ignition, 1000 °C expand Show data source
Bulk Density
0.5-1.1 g/mL expand Show data source
Empirical Formula (Hill Notation)
Bi2O3 expand Show data source

DETAILS

DETAILS

Wikipedia Wikipedia Sigma Aldrich Sigma Aldrich
Sigma Aldrich - 223891 external link
Features and Benefits
Preparation of new stabilized, oxide ion-conducting, bismuth vanadate phases by a microwave assisted method, from V2O5, Bi2O3 and other solid oxides, was reported. These ceramics show promise in solid oxide fuel cells, water-vapor electrolyzers and oxygen sensors.1
Packaging
100, 500 g in poly bottle
Legal Information
ReagentPlus is a registered trademark of Sigma-Aldrich Co. LLC
Sigma Aldrich - 637017 external link
Features and Benefits
Preparation of new stabilized, oxide ion-conducting, bismuth vanadate phases by a microwave assisted method, from V2O5, Bi2O3 and other solid oxides, was reported. These ceramics show promise in solid oxide fuel cells, water-vapor electrolyzers and oxygen sensors.1
Packaging
25, 100, 250 g in poly bottle
Sigma Aldrich - 335959 external link
Features and Benefits
Preparation of new stabilized, oxide ion-conducting, bismuth vanadate phases by a microwave assisted method, from V2O5, Bi2O3 and other solid oxides, was reported. These ceramics show promise in solid oxide fuel cells, water-vapor electrolyzers and oxygen sensors.1
Application
Preparation of new stabilized, oxide ion-conducting, bismuth vanadate phases by a microwave assisted method, from V2O5, Bi2O3 and other solid oxides, was reported. These ceramics show promise in solid oxide fuel cells, water-vapor electrolyzers and oxygen sensors.1
Sigma Aldrich - 202827 external link
Features and Benefits
Preparation of new stabilized, oxide ion-conducting, bismuth vanadate phases by a microwave assisted method, from V2O5, Bi2O3 and other solid oxides, was reported. These ceramics show promise in solid oxide fuel cells, water-vapor electrolyzers and oxygen sensors.1
Packaging
10, 50, 250 g in poly bottle
Sigma Aldrich - 10305 external link
Features and Benefits
Preparation of new stabilized, oxide ion-conducting, bismuth vanadate phases by a microwave assisted method, from V2O5, Bi2O3 and other solid oxides, was reported. These ceramics show promise in solid oxide fuel cells, water-vapor electrolyzers and oxygen sensors.1
Sigma Aldrich - 95381 external link
Features and Benefits
Preparation of new stabilized, oxide ion-conducting, bismuth vanadate phases by a microwave assisted method, from V2O5, Bi2O3 and other solid oxides, was reported. These ceramics show promise in solid oxide fuel cells, water-vapor electrolyzers and oxygen sensors.1

REFERENCES

REFERENCES

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PATENTS

PATENTS

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INTERNET

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