Literature DB >> 22559992

Ion transport with charge-protected and non-charge-protected cations in alcohol-based electrolytes using the compensated Arrhenius formalism. Part I: ionic conductivity and the static dielectric constant.

Matt Petrowsky1, Allison Fleshman, Roger Frech.   

Abstract

The temperature dependence of ionic conductivity and the static dielectric constant is examined for 0.30 m TbaTf- or LiTf-1-alcohol solutions. Above ambient temperature, the conductivity increases with temperature to a greater extent in electrolytes whose salt has a charge-protected cation. Below ambient temperature, the dielectric constant changes only slightly with temperature in electrolytes whose salt has a cation that is not charge-protected. The compensated Arrhenius formalism is used to describe the temperature-dependent conductivity in terms of the contributions from both the exponential prefactor σo and Boltzmann factor exp(-Ea/RT). This analysis explains why the conductivity decreases with increasing temperature above 65 °C for the LiTf-dodecanol electrolyte. At higher temperatures, the decrease in the exponential prefactor is greater than the increase in the Boltzmann factor.

Entities:  

Year:  2012        PMID: 22559992     DOI: 10.1021/jp209205u

Source DB:  PubMed          Journal:  J Phys Chem B        ISSN: 1520-5207            Impact factor:   2.991


  1 in total

1.  Mass and charge transport in 1-alkyl-3-methylimidazolium triflate ionic liquids.

Authors:  Matt Petrowsky; Christopher M Burba; Roger Frech
Journal:  J Chem Phys       Date:  2013-11-28       Impact factor: 3.488

  1 in total

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