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CsOTf {[Cesium Triflate], >99.95%} Powder as Electrolyte Additive for Lithium-Ion Battery, 10-50 g/bottle, CLIBEACsOTf

CsOTf {[Cesium Triflate], >99.95%} Powder as Electrolyte Additive for Lithium-Ion Battery, 10-50 g/bottle, CLIBEACsOTf

$119.00 USD
In Stock SKU: CLIBEACsOTf10
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Cesium Triflate (CsOTf}, or Cesium trifluoromethanesulfonate, CsCF3SO3) is an alkali metal salt functional additive evaluated in non-aqueous electrolytes for advanced rechargeable batteries.  While closely related to CsTFSI, CsOTf combines the large Cs+ cation with a smaller, rigid triflate anion (CF3SO3^-) rather than the bulkier, flexible imide anion (TFSI-).

Maximum Electrostatic Shielding (Cs+): The Cs+ cation provides an effective Self-Healing Electrostatic Shield (SHES): The standard reduction potential of Cs+ (~ -2.92 V vs. SHE) is slightly less negative than that of Li+ (~ -3.04 V). During fast charging, electric fields concentrate at microscopic peaks/dendrite tips on the lithium anode. Cs+ ions rapidly migrate to these high-field regions and accumulate without being reduced into metallic cesium. This accumulation forms a localized positive electrostatic buffer that repels incoming Li+ ions toward surrounding valleys, driving uniform, planar lithium electrodeposition across the anode surface.

Triflate-Derived Interphase Construction: The triflate anion (OTf-) exhibits distinct decomposition characteristics on anode and cathode surfaces: Under reductive conditions at the lithium anode, OTf- breaks down to form an inorganic-rich Solid Electrolyte Interphase (SEI) composed of lithium fluoride (LiF) and sulfur species (Li2S). This layer offers high mechanical strength and fast Li+ interfacial transport. Unlike imide salts (TFSI-), which can cause aluminum current collector pitting at higher potentials (> 3.8 V), triflate species are generally less corrosive toward aluminum, providing better high-voltage current collector stability.

Part Number

CLIBEACsOTf (C-LIB-EA-CsOTf)

Chemical Formula

CsSO₃CF₃

Appearance

White Powder

Purity

>99.95% (Battery Grade)

Molecular Weight 281.97 g/mol
Package Size 10 g, 25 g, and 50 g/bottle


Notes: Please store the RbOTf powder in the glovebox due to its sensitivity to humidity and oxygen 

References

  1. T. J. Leckie, et al. Secondary alkali-metal salts in supporting electrolytes for lithium polysulfide flow batteries, EES Batteries, 2026, DOI: 10.1039/d6eb00050a.
  2. K. Rajsundar, et al., Rational engineering of electrolytes for lithium–sulfur batteries, Chemical Communications, 2025, 61, 12618–12642

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