Key points are not available for this paper at this time.
Multivalent-ion battery technologies are increasingly attractive options for meeting diverse energy storage needs. Calcium ion batteries (CIB) are particularly appealing candidates for their earthly abundance, high theoretical volumetric energy density, and relative safety advantages. At present, only a few Ca-ion electrolyte systems are reported to reversibly plate at room temperature: for example, aluminates and borates, including CaTPFA2, where TPFA− = Al(OC(CF3)3)4− and CaB(hfip)42, B(hfip)42– = B(OCH(CF3)2)4−. Analyzing the structure of these salts reveals a common theme: the prevalent use of a weakly coordinating anion (WCA) consisting of a tetracoordinate aluminum/boron (Al/B) center with fluorinated alkoxides. Leveraging the concept of theory-aided design, we report an innovative, one-pot synthesis of two new calcium-ion electrolyte salts (CaAl(tftb)42, CaAl(hftb)42) and two reported salts (CaAl(hfip)42 and CaTPFA2) where hfip = (−OCH(CF3)2), tftb = (−OC(CF3)(Me)2), hftb = (−OC(CF3)2(Me)), TPFA− = Al(OC(CF3)3)4−. We also reveal the dependence of Coulombic efficiency on their inherent propensity for cation–anion coordination.
Building similarity graph...
Analyzing shared references across papers
Loading...
Noel J. Leon
Stefan Ilić
Xiaowei Xie
The Journal of Physical Chemistry Letters
University of California, Berkeley
Northwestern University
Lawrence Berkeley National Laboratory
Building similarity graph...
Analyzing shared references across papers
Loading...
Leon et al. (Mon,) studied this question.
www.synapsesocial.com/papers/68e6b4d5b6db6435876361fe — DOI: https://doi.org/10.1021/acs.jpclett.4c00969