Entropic Contributions to Sodium Solvation and Solvent Stabilization upon Electrochemical Sodium Deposition from Diglyme and Propylene Carbonate Electrolytes

Author:

Karcher Franziska1,Uhl Matthias2,Geng Tanja2,Jacob Timo234,Schuster Rolf1ORCID

Affiliation:

1. Institute of Physical Chemistry Karlsruhe Institute of Technology Germany

2. Institute of Electrochemistry Ulm University Germany

3. Helmholtz-Institute-Ulm (HIU) Electrochemical Energy Storage Ulm Germany

4. Karlsruhe Institute of Technology (KIT) Karlsruhe Germany

Abstract

AbstractThe formation of an appropriate solid electrolyte interphase (SEI) at the anode of a sodium battery is crucially dependent on the electrochemical stability of solvent and electrolyte at the redox potential of Na/Na+ in the respective system. In order to determine entropic contributions to the relative stability of the electrolyte solution, we measure the reaction entropy of Na metal deposition for diglyme (DG) and propylene carbonate (PC) based electrolyte solutions by electrochemical microcalorimetry at single electrodes. We found a large positive reaction entropy for Na+ deposition in DG of ΔR 234 J mol−1 K−1 (c.f.: ΔR 83 J mol−1 K−1), which signals substantial entropic destabilization of Na+ in DG by about 0.73 eV, thus increasing the stability of solvent and electrolyte relative to Na+ reduction. We attribute this strong entropic destabilization to a highly negative solvation entropy of Na+, due to the low dielectric constant and high freezing entropy of DG.

Funder

Deutsche Forschungsgemeinschaft

Publisher

Wiley

Subject

General Medicine

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