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450197

Sigma-Aldrich

Lithium hydroxide monohydrate

99.995% trace metals basis

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Synonym(s):
Lithium hydroxide hydrate
Linear Formula:
LiOH · H2O
CAS Number:
Molecular Weight:
41.96
EC Number:
MDL number:
PubChem Substance ID:
NACRES:
NA.23

Assay

99.995% trace metals basis

form

solid

impurities

≤55.0 ppm Trace Metal Analysis

SMILES string

[Li+].O.[OH-]

InChI

1S/Li.2H2O/h;2*1H2/q+1;;/p-1

InChI key

GLXDVVHUTZTUQK-UHFFFAOYSA-M

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1 of 4

This Item
25427462528L4533
Lithium hydroxide monohydrate BioUltra, ≥99.0% (T)

Sigma-Aldrich

62528

Lithium hydroxide monohydrate

Premium Grade
Lithium hydroxide monohydrate BioXtra, 98.5-101.5% (titration)

Sigma-Aldrich

L4533

Lithium hydroxide monohydrate

Premium Grade
form

solid

form

crystalline

form

solid

form

-

impurities

≤55.0 ppm Trace Metal Analysis

impurities

≤550.0 ppm Trace Metal Analysis

impurities

insoluble matter, passes filter test

impurities

≤0.0005% Phosphorus (P), ≤0.1% Insoluble matter

Quality Level

200

Quality Level

200

Quality Level

200

Quality Level

200

General description

Lithium hydroxide monohydrate (LiOH.H2O) is a lithium source that can be prepared from lithium carbonate by membrane electrolysis.

Application

LiOH.H2O can be used in the preparation of porous cathode films for the fabrication of lithium batteries. It can also be used in the development of lithium oxygen batteries.

Pictograms

CorrosionExclamation mark

Signal Word

Danger

Hazard Statements

Hazard Classifications

Acute Tox. 4 Oral - Eye Dam. 1 - Skin Corr. 1B

Storage Class Code

8A - Combustible, corrosive hazardous materials

WGK

WGK 1

Flash Point(F)

Not applicable

Flash Point(C)

Not applicable

Personal Protective Equipment

dust mask type N95 (US), Eyeshields, Gloves

Certificates of Analysis (COA)

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T1503
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25G
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705578-5MG-PW

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MMYOMAG-74K-13

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Precipitation in aqueous lithium-oxygen batteries: a model-based analysis
Horstmann B, et al.
Energy & Environmental Science, 6(4), 1299-1314 (2013)
Preparation of high-purity lithium hydroxide monohydrate from technical-grade lithium carbonate by membrane electrolysis
Ryabtsev AD, et al.
Russian Journal of Applied Chemistry, 77(7), 1108-1116 (2004)
Preparation and performances of highly porous layered LiCoO2 films for lithium batteries.
Koike S and Tatsumi K.
Journal of Power Sources, 174(2), 976-980 (2007)
A S Malkani et al.
Science advances, 6(45) (2020-11-08)
Electrolyte cations affect the activity of surface-mediated electrocatalytic reactions; however, understanding the modes of interaction between cations and reaction intermediates remains lacking. We show that larger alkali metal cations (excluding the thickness of the hydration shell) promote the electrochemical CO
Timothy D Vaden et al.
Physical chemistry chemical physics : PCCP, 8(26), 3078-3082 (2006-06-29)
The internal energy or effective temperature of cluster ions has become an important issue in characterizing the structures observed in these species. This report considers the role played by the method of ion preparation (laser vaporization-supersonic expansion versus ion impact-evaporative

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