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12057-17-9 molecular structure
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lithium(1+) ion dioxomanganese manganesoylolate

ChemBase ID: 143097
Molecular Formular: LiMn2O4
Molecular Mass: 180.814698
Monoisotopic Mass: 180.87175323
SMILES and InChIs

SMILES:
[Li+].[O-][Mn]=O.O=[Mn]=O
Canonical SMILES:
O=[Mn]=O.[O-][Mn]=O.[Li+]
InChI:
InChI=1S/Li.2Mn.4O/q+1;;;;;;-1
InChIKey:
VLXXBCXTUVRROQ-UHFFFAOYSA-N

Cite this record

CBID:143097 http://www.chembase.cn/molecule-143097.html

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NAMES AND DATABASE IDS

NAMES AND DATABASE IDS

Names Database IDs
IUPAC name
lithium(1+) ion dioxomanganese manganesoylolate
IUPAC Traditional name
lithium(1+) ion manganese dioxide permanganate
Synonyms
LMO
Lithium manganese(III,IV) oxide
Lithium manganese oxide
Lithium manganese(III,IV) oxide
高锰(III,IV)酸锂
锂锰氧化物
高锰(III,IV)酸锂
CAS Number
12057-17-9
MDL Number
MFCD01114233
PubChem SID
162237320
24871819
PubChem CID
56845409

DATA SOURCES

DATA SOURCES

All Sources Commercial Sources Non-commercial Sources
Data Source Data ID
PubChem 56845409 external link

CALCULATED PROPERTIES

CALCULATED PROPERTIES

JChem
Acid pKa 3.0  H Acceptors
H Donor LogD (pH = 5.5) -3.4039774 
LogD (pH = 7.4) -3.598255  Log P -1.3376 
Molar Refractivity 2.8858 cm3 Polarizability 4.7144732 Å3
Polar Surface Area 40.13 Å2 Rotatable Bonds
Lipinski's Rule of Five true 

PROPERTIES

PROPERTIES

Physical Property Safety Information Product Information Bioassay(PubChem)
Apperance
powder expand Show data source
Melting Point
>400 °C(lit.) expand Show data source
400 °C expand Show data source
Density
4.1 g/cm3 at 25 °C expand Show data source
MSDS Link
Download expand Show data source
Download expand Show data source
German water hazard class
3 expand Show data source
Purity
>99% expand Show data source
Grade
electrochemical grade expand Show data source
Particle Size
<0.5 μm (BET) expand Show data source
<5 μm expand Show data source
Linear Formula
LiMn2O4 expand Show data source

DETAILS

DETAILS

Sigma Aldrich Sigma Aldrich
Sigma Aldrich - 725129 external link
Features and Benefits
Cathode Materials for High Energy Density Li-Ion Rechargeable Batteries; sub-micron particle size results in increased surface area of electrodes. The composition listed allows the preparation of battery electrodes with enhanced performance and durability.Li-Batteries, material for electrodes design and manufacturing1,2,3
Packaging
25 g in poly bottle
Protocols & Applications
Nanomaterials for Energy Storage in Lithium-ion Battery Applications
Sigma Aldrich - 482277 external link
Packaging
25 g in glass bottle

REFERENCES

REFERENCES

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PATENTS

PATENTS

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INTERNET

INTERNET

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