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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
24871819
162237320
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 2 
H Donor 0  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 0 
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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