Publication | Open Access
Substituted ferrocenes and iodine as synergistic thermoelectrochemical heat harvesting redox couples in ionic liquids
59
Citations
31
References
2015
Year
EngineeringEnergy ConversionChemistryEnergy RecyclingChemical EngineeringIonic LiquidsRedox CouplesRedox ChemistryThermodynamicsSynergistic Thermoelectrochemical HeatMaterials ScienceSolid-state IonicEnergy HarvestingDeep Eutectic SolventElectrochemistryIonic ConductorSeebeck CoefficientIodine ResultsSubstituted FerrocenesThermophysical Property
Combining ferrocene and iodine results in enhanced thermoelectrochemical (or thermogalvanic) waste heat harvesting abilities, for both the Seebeck coefficient and the overall power output. All systems displayed a mixture of ferrocene, ferrocenium, iodine and triiodide. The observed enhancement correlates with lower electron-density on the ferrocene; the synergistic improvement observed for mixtures of substituted ferrocenes and iodine is attributed to the formation of charge-transfer complexes. Combining dibutanoylferrocene and iodine resulted in the highest Seebeck coefficient of 1.67 mV K(-1).
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