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Key Documents

Safety Information

266000

Sigma-Aldrich

Lithium

greener alternative

ribbon, thickness × W 1.5 mm × 100 mm, 99.9% trace metals basis

Synonym(s):

Lithium foil

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1 G
¥3,832.67
5 G
¥14,190.36

¥3,832.67


Available to ship on2025年4月25日Details


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1 G
¥3,832.67
5 G
¥14,190.36

About This Item

Linear Formula:
Li
CAS Number:
Molecular Weight:
6.94
EC Number:
MDL number:
UNSPSC Code:
12141803
PubChem Substance ID:
NACRES:
NA.23

¥3,832.67


Available to ship on2025年4月25日Details


Request a Bulk Order

Quality Level

Assay

99.9% trace metals basis

form

ribbon

reaction suitability

reagent type: reductant

greener alternative product characteristics

Design for Energy Efficiency
Learn more about the Principles of Green Chemistry.

sustainability

Greener Alternative Product

resistivity

9.446 μΩ-cm, 20°C

thickness × W

1.5 mm × 100 mm

bp

1342 °C (lit.)

mp

180 °C (lit.)

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This Item
174091740817245
technique(s)

immunoprecipitation (IP): suitable

technique(s)

immunoprecipitation (IP): suitable

technique(s)

immunoprecipitation (IP): suitable

technique(s)

immunoprecipitation (IP): suitable

manufacturer/tradename

EZ-ChIP

manufacturer/tradename

Magna ChIP®

manufacturer/tradename

Magna ChIP®

manufacturer/tradename

Upstate®

Quality Level

100

Quality Level

100

Quality Level

100

Quality Level

100

shipped in

wet ice

shipped in

dry ice

shipped in

dry ice

shipped in

-

General description

Lithium ribbon, thickness × W 1.5 mm × 100 mm is a class of electrode material that can be used in the fabrication of lithium-ion batteries. Lithium-ion batteries consist of anode, cathode, and electrolyte with a charge-discharge cycle. These materials enable the formation of greener and sustainable batteries for electrical energy storage.[1][2][3][4]
We are committed to bringing you Greener Alternative Products, which adhere to one or more of The 12 Principles of Greener Chemistry. This product has been enhanced for energy efficiency. Find details here.

Application

Lithium ribbon can be used as a counter and a reference electrode for lithium-ion batteries. It can also be used in the fabrication of textile-based batteries.[5][6]

Pictograms

FlameCorrosion

Signal Word

Danger

Hazard Statements

Hazard Classifications

Skin Corr. 1B - Water-react 1

Supplementary Hazards

Storage Class Code

4.3 - Hazardous materials which set free flammable gases upon contact with water

WGK

WGK 1

Flash Point(F)

Not applicable

Flash Point(C)

Not applicable

Personal Protective Equipment

dust mask type N95 (US), Eyeshields, Gloves

Regulatory Information

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Investigation on the solid electrolyte interface formed on pyrolyzed photoresist carbon anodes for C-MEMS lithium-ion batteries
Galobardes F, et al.
Diamond and Related Materials, 15(11-12), 1930-1934 (2006)
A layer-built rechargeable lithium ribbon-type battery for high energy density textile battery applications
Kim J, et al.
Journal of Material Chemistry A, 2(6), 1774-1780 (2014)
Enikö Zörgö et al.
PLoS genetics, 9(3), e1003388-e1003388 (2013-04-05)
The number of chromosome sets contained within the nucleus of eukaryotic organisms is a fundamental yet evolutionarily poorly characterized genetic variable of life. Here, we mapped the impact of ploidy on the mitotic fitness of baker's yeast and its never
U Eismann et al.
Optics express, 21(7), 9091-9102 (2013-04-11)
We present an all-solid-state laser source emitting up to 2.1 W of single-frequency light at 671 nm developed for laser cooling of lithium atoms. It is based on a diode-pumped, neodymium-doped orthovanadate (Nd:YVO(4)) ring laser operating at 1342 nm. Optimization
M Sathiya et al.
Nature materials, 12(9), 827-835 (2013-07-16)
Li-ion batteries have contributed to the commercial success of portable electronics and may soon dominate the electric transportation market provided that major scientific advances including new materials and concepts are developed. Classical positive electrodes for Li-ion technology operate mainly through

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Professor Qiao's review explores stable microstructures for lithium metal fluoride batteries, advancing energy storage technologies.

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Solid oxide fuel cells and electrolyzers show potential for chemical-to-electrical energy conversion, despite early development stages.

Li-ion batteries are currently the focus of numerous research efforts with applications designed to reduce carbon-based emissions and improve energy storage capabilities.

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