The Unified Redox Scale for All Solvents: Consistency and Gibbs Transfer Energies of Electrolytes from their Constituent Single Ions

Author:

Radtke Valentin1ORCID,Priester Denis1,Heering Agnes2ORCID,Müller Carina1,Koslowski Thorsten3ORCID,Leito Ivo2ORCID,Krossing Ingo1ORCID

Affiliation:

1. Institut für Anorganische und Analytische Chemie and Freiburger Materialforschungszentrum (FMF) Universität Freiburg Albertstr. 21 79104 Freiburg Germany

2. Institute of Chemistry University of Tartu Ravila 14a Str 50411 Tartu Estonia

3. Institut für Physikalische Chemie Albert-Ludwigs-Universität Freiburg Albertstr. 21 79104 Freiburg Germany

Abstract

AbstractWe have devised the unified redox scale EabsH2O, which is valid for all solvents. The necessary single ion Gibbs transfer energy between two different solvents, which only can be determined with extra‐thermodynamic assumptions so far, must clearly satisfy two essential conditions: First, the sum of the independent cation and anion values must give the Gibbs transfer energy of the salt they form. The latter is an observable and measurable without extra‐thermodynamic assumptions. Second, the values must be consistent for different solvent combinations. With this work, potentiometric measurements on silver ions and on chloride ions show that both conditions are fulfilled using a salt bridge filled with the ionic liquid [N2225][NTf2]: if compared to the values resulting from known pKL values, the silver and chloride single ion magnitudes combine within a uncertainty of 1.5 kJ mol−1 to the directly measurable transfer magnitudes of the salt AgCl from water to the solvents acetonitrile, propylene carbonate, dimethylformamide, ethanol, and methanol. The resulting values are used to further develop the consistent unified redox potential scale EabsH2O that now allows to assess and compare redox potentials in and over six different solvents. We elaborate on its implications.

Funder

Deutsche Forschungsgemeinschaft

European Research Council

Eesti Teadusagentuur

Publisher

Wiley

Subject

General Chemistry,Catalysis,Organic Chemistry

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