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Atomfair Lithium dicyanamide C2LiN3 CAS 195199-57-6
Lithium Dicyanamide (C2LiN3) is a high-purity inorganic compound widely utilized in advanced electrochemical and materials research. With the IUPAC name lithium;dicyanoazanide and CAS number 195199-57-6, this white crystalline powder exhibits exceptional stability and solubility in polar solvents, making it ideal for lithium-ion battery electrolytes, ionic liquid synthesis, and catalysis. Its unique dicyanamide anion (N(CN)2SUB_SUP_3 ) contributes to low viscosity and high conductivity in non-aqueous systems. Packaged under inert conditions to ensure longevity, our product undergoes rigorous QC testing (HPLC, NMR) to guarantee ≥99% purity. Suitable for glovebox handling and compatible with organic solvents like acetonitrile and DMF.
Description
Lithium Dicyanamide (C2LiN3) is a high-purity inorganic compound widely utilized in advanced electrochemical and materials research. With the IUPAC name lithium;dicyanoazanide and CAS number 195199-57-6, this white crystalline powder exhibits exceptional stability and solubility in polar solvents, making it ideal for lithium-ion battery electrolytes, ionic liquid synthesis, and catalysis. Its unique dicyanamide anion (N(CN)2−) contributes to low viscosity and high conductivity in non-aqueous systems. Packaged under inert conditions to ensure longevity, our product undergoes rigorous QC testing (HPLC, NMR) to guarantee ≥99% purity. Suitable for glovebox handling and compatible with organic solvents like acetonitrile and DMF.
Properties
- CAS Number: 195199-57-6
- Complexity: 86.5
- IUPAC Name: lithium;dicyanoazanide
- InChI: InChI=1S/C2N3.Li/c3-1-5-2-4;/q-1;+1
- InChI Key: AXRRPFRZKHRKIZ-UHFFFAOYSA-N
- Exact Mass: 73.02522545
- Molecular Formula: C2LiN3
- Molecular Weight: 73.0
- SMILES: [Li+].C(#N)[N-]C#N
- Topological: 48.6
- Monoisotopic Mass: 73.02522545
- Synonyms: lithium dicyanamide, 195199-57-6
Application
Lithium dicyanamide serves as a key precursor for lithium-ion battery electrolytes due to its high thermal stability and ionic conductivity. It is also employed in the synthesis of ionic liquids for green chemistry applications. Researchers leverage its catalytic properties in organic transformations, such as cycloaddition reactions. Additionally, it finds use in polymer electrolytes for solid-state batteries.
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Disclaimer: Sold exclusively for laboratory research. Prohibited for commercial use, diagnostics, or human/animal applications. Buyers assume all compliance liability.
Disclaimer
Intended Use & Restrictions
This product is sold exclusively for laboratory research, analytical testing, or non-commercial purposes.
- Strictly prohibited: Resale, repackaging, or formulation into commercial products.
- Not approved for human/animal use, diagnostics, or manufacturing (including pharmaceuticals, agrochemicals, or consumer goods).
Patent & Regulatory Compliance
Certain molecules may be protected by active patents or regulatory restrictions.
- Buyers must independently verify patent status (e.g., via USPTO/EPO/CNIPA) and comply with local laws.
- Atomfair LLC does not provide legal assurances regarding patent non-infringement or jurisdictional compliance.
Liability Release
By purchasing, the buyer agrees to:
- Use this product only as permitted by law.
- Indemnify Atomfair LLC against all claims arising from misuse, patent infringement, or regulatory violations.
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