Thank you!

Your quote has been successfully submitted!

For products requiring additional information, our team will contact you within 1 business day

Failed

There was an error submitting your quote. Please try again.

MSE PRO 1,2-bis(2,2-difluoroethoxy)-Ethane (F4DEE, C6H10F4O2)– MSE Supplies LLC

Overstock Sale - Select Products 10% Off on Orders of $500 or More! Promo Code:

SAVING10

Shop Now
Menu

This product has been added to the cart.

MSE PRO 1,2-bis(2,2-difluoroethoxy)-Ethane (C<sub>6</sub>H<sub>10</sub>F<sub>4</sub>O<sub>2</sub>) for Battery Research - MSE Supplies LLC

MSE PRO 1,2-bis(2,2-difluoroethoxy)-Ethane (F4DEE, C6H10F4O2) for Battery Research

SKU: CM1069

  • £75400
  • Save £9000



MSE PRO™ 1,2-bis(2,2-difluoroethoxy)-Ethane (F4DEE, C6H10F4O2) for Battery Research, 25g

1,2-Bis(2,2-difluoroethoxy)ethane can be used as electrolyte solution of a non-aqueous electrolyte secondary battery. The half-cell with the F4DEE electrolyte displays remarkable long-term stability with high coulombic efficiency. The iteratively designed molecules F4DEE integrate several desired properties, including fast ion conduction, low and stable cell overpotential, high Li metal efficiency, fast activation and oxidative stability. The developed electrolytes, especially F4DEE and F5DEE, simultaneously possess high ionic conductivity, low and stable interfacial transport, reproducibly high Li metal efficiency, record-fast activation and high-voltage stability. These features enable long cycle life of Li metal batteries and anode-free pouch cells under lean electrolyte and realistic testing conditions. 

Specification

Product Name 1,2-bis(2,2-difluoroethoxy)-ethane
Chemical Formula C6H10F4O2
Synonym(s) F4DEE
SKU# CM1069
CAS# 1691328-94-5
Molecular Weight 190.14 g/mol
Appearance Colorless liquid
Purity 98%
Boiling Point 172.8 °C (343 °F) @ 760mm Hg
Density 1.24g/mL at 25 °C (77 °F) (lit.)
Storage Condition 2-8 °C (36-46 °F) 

References

[1] Park, MS., Kim, J.H. Salt-philic and solvent-phobic. Nature Energy 8, 558–559 (2023).

[2] Yu, Z., Rudnicki, P.E., Zhang, Z. et al. Rational solvent molecule tuning for high-performance lithium metal battery electrolytes. Nat Energy 7, 94–106 (2022).