N,N-Diethyl-N-methyl-N-(2-methoxyethyl)ammonium bis(trifluoromethylsulfonyl)imide, >99%
Price range: $407.67 through $6,177.05
Product Code: IL-0116-HPCAS NO: 464927-84-2
- Chemical Formula: C10H20F6N2O5S2
- Synonyms: DEME BTA, DEME NTf2, DEME TFSI, N122(2O1) TFSI, DEME BTI
Conductivity: 2.62 mS/cm (20 °C)
SUM Formula: C10H20F6N2O5S2
Molecular Weight: 426.40
Melting Point: -46 °C
Density: 1.42 g/cm³ (20 °C)
ECW: 5.7 V
Purity: >99%
Viscosity: 120 cP (20 °C)
- SUM Formula: C10H20F6N2O5S2
- Molecular Weight: 426.40
- Melting Point: -46 °C
- Density: 1.42 g/cm³ (20 °C)
- ECW: 5.7 V
- Viscosity: 120 cP (20 °C)
N,N-Diethyl-N-methyl-N-(2-methoxyethyl)ammonium bis(trifluoromethylsulfonyl)imide, CAS: 464927-84-2
Key Applications:
Electrolytes for Energy Storage
- Serves as a high‑conductivity ionic liquid cation paired with TFSI⁻, enabling low‑viscosity, wide‑electrochemical‑window electrolytes.
- Supports lithium, sodium, and multivalent battery research where thermal stability and low flammability are required.
- Useful in formulating mixed‑cation ionic liquid systems to tune transport properties and interfacial behavior.
Electrodeposition and Metal Processing
- Provides a stable, non‑volatile medium for electrodeposition of reactive or air‑sensitive metals.
- Enables smooth, uniform metal films due to its wide liquid range and high ionic mobility.
Catalysis and Organic Synthesis
- Functions as a non‑coordinating, thermally robust solvent for transition‑metal catalysis.
- Suitable for biphasic catalysis where phase separation and recyclability are desired.
- Supports acid‑sensitive transformations due to the weakly coordinating TFSI⁻ anion.
Separation Science and Extraction
- Effective in liquid–liquid extraction systems requiring hydrophobic ionic liquids with tunable polarity.
- Useful for selective extraction of metal ions, organics, and fluorinated species.
Materials Processing and Polymer Science
- Acts as a plasticizer or processing aid for high‑performance polymers requiring thermal stability and low volatility.
- Supports ion‑gel formation and polymer–ionic liquid composites for flexible electronics and membranes.
Spectroscopy and Physical Chemistry
- Provides a well‑defined, low‑volatility medium for studying ion transport, solvation, and interfacial structure.
- Suitable for high‑temperature NMR, Raman, and impedance spectroscopy due to its thermal and electrochemical stability.
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