Tris(2 H -hexafluoroisopropyl) borate (THFPB) was synthesized and studied as an additive for lithium battery electrolytes. The low polarity of its fluorinated isopropyl substitute imparts a low solubility of THFPB in the polar ethylene carbonate-dimethyl carbonate (EC-DMC) solvent system. THFPB shows dramatic effect on conductivity enhancement on lithium salts, such as and LiBr. The ambient-temperature ionic conductivity of these composite electrolytes reaches as high as Although THFPB is a stronger anion complexing agent than its homologue tris(pentafluorophenyl) borate (TFPBO), which has fluorinated phenyl substitutes, its effect on conductivity enhancement of LiF and LiCl is limited by its low solubility and is less than that of TFPBO. Composite electrolytes containing THFPB and LiF or salts display excellent electrochemical stability in the EC-DMC solvent, their electrochemical windows being 5.5 and 5.23 V for LiF or respectively. THFPB-based electrolytes show high cycling efficiency and cycleability in and cells.
No takes yet. Share an insight, caveat, or question.
Sun et al. (2002) studied this question.
Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context: