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Lithium Peroxide

Lithium Peroxide

Product Details:

  • Molecular Weight 45.88 Grams (g)
  • Storage Room Temperature
  • Form Powder
  • Melting Point 195 °C
  • Density 2.31 Gram per cubic centimeter(g/cm3)
  • Molecular Formula Li2O2
  • Classification Organic Chemicals
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Lithium Peroxide Price And Quantity

  • 50 Gram

Lithium Peroxide Product Specifications

  • Organic Chemicals
  • Li2O2
  • Industrial Grade
  • 234-758-0
  • 195 °C
  • Powder
  • 12031-80-0
  • 45.88 Grams (g)
  • Room Temperature
  • 2.31 Gram per cubic centimeter(g/cm3)
  • Lithium Peroxide
  • Industrial

Lithium Peroxide Trade Information

  • 50 Gram Per Month
  • 2-12 Week

Product Description

Our timely delivery of qualitative products has supported us to become the prime entity in this domain by offering top quality Lithium Peroxide. The provided chemical compound is widely used tyre industry and other places to remove CO2 from the environment. In order to process this product in accordance with industry standards our adroit professionals use optimum quality chemical compounds. Apart from this clients can avail it from us at market leading prices.

Lithium Peroxide Properties:


1. CAS Number: 12031-80-0

2. Chemical formula: Li2O2

3. Molar mass: 45.885 g/mol

4. Appearance: fine, white powder

5. Odor: odorless

6. Density: 2.32 g/cm3

7. Melting point: Decomposes to Li2O at 450 degree centigrade but melts at 197 degree centigrade

8. Solubility in water: soluble

Lithium Peroxide Applications:


1. Oxygen generation: Lithium peroxide is known for its ability to release oxygen upon decomposition. This property makes it useful in applications where oxygen generation is required, such as in emergency breathing systems in submarines, spacecraft, and other confined environments.

2. Rechargeable lithium-air batteries: Lithium peroxide has been studied as a possible cathode material in lithium-air batteries. In these batteries, oxygen from the air reacts with lithium ions to form lithium peroxide during discharge, and lithium peroxide decomposes back to oxygen during charging. Research in this area aims to develop high-energy-density batteries for various applications.

3. Catalysis: Lithium peroxide has shown potential as a catalyst in certain chemical reactions. For example, it has been studied for its catalytic activity in the oxygen evolution reaction (OER) during water splitting for hydrogen production, which is crucial for renewable energy technologies like electrolysis.

4. Carbon dioxide capture: Lithium peroxide has been investigated for its ability to capture carbon dioxide from the atmosphere. The reaction between lithium peroxide and carbon dioxide forms lithium carbonate and releases oxygen, which can be used in carbon capture and storage (CCS) technologies to mitigate greenhouse gas emissions.

5. Chemical synthesis: Lithium peroxide can be used as a reactant or reagent in various chemical syntheses. Its properties make it useful in organic chemistry reactions, especially those involving oxygen transfer or oxidation processes.

6. Pyrotechnics: Lithium compounds, including lithium peroxide, are used in pyrotechnic formulations. Lithium peroxide can contribute to the production of bright flames in fireworks and other pyrotechnic devices.

7. Research and development: Lithium peroxide continues to be of interest in research and development efforts aimed at exploring new materials and technologies. Its unique properties make it a subject of investigation in fields such as materials science, energy storage, and environmental science.

Lithium Peroxide FAQ:


Q. Is lithium peroxide safe to handle?


Ans: Lithium peroxide can be hazardous if mishandled. It should be handled with care, preferably in a controlled environment by trained personnel. Safety precautions such as wearing appropriate personal protective equipment and following handling guidelines are necessary to prevent accidents.

Q. Is lithium peroxide used in consumer products?


Ans: While lithium peroxide has industrial and research applications, it is not commonly found in consumer products due to its reactivity and potential hazards.

Q. What are the environmental considerations of lithium peroxide?


Ans: Like other lithium compounds, lithium peroxide can have environmental impacts if not handled properly. Its disposal should follow regulations for hazardous waste, and its potential as a carbon dioxide capture material may contribute to efforts to mitigate greenhouse gas emissions.

Q. Are there any health risks associated with lithium peroxide?


Ans: Lithium peroxide can be harmful if ingested, inhaled, or if it comes into contact with skin or eyes. Exposure can lead to irritation, burns, or other health effects. Safety data sheets (SDS) and handling guidelines should be consulted for proper handling and storage procedures.
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