1 |
Describing Temperature-Dependent Self-Diffusion Coefficients and Fluidity of 1-and 3-Alcohols with the Compensated Arrhenius Formalism Fleshman AM, Forsythe GE, Petrowsky M, Frech R Journal of Physical Chemistry B, 120(37), 9959, 2016 |
2 |
Application of the Compensated Arrhenius Formalism to Fluidity Data of Polar Organic Liquids Petrowsky M, Fleshman AM, Frech R Journal of Physical Chemistry B, 117(10), 2971, 2013 |
3 |
Concentration Dependence of Molal Conductivity and Dielectric Constant of 1-Alcohol Electrolytes Using the Compensated Arrhenius Formalism Fleshman AM, Petrowsky M, Frech R Journal of Physical Chemistry B, 117(17), 5330, 2013 |
4 |
Temperature Dependence of Ion Transport in Dilute Tetrabutylammonium Triflate-Acetate Solutions and Self-Diffusion in Pure Acetate Liquids Bopege DN, Petrowsky M, Fleshman AM, Frech R, Johnson MB Journal of Physical Chemistry B, 116(1), 71, 2012 |
5 |
Extending the compensated Arrhenius formalism to concentrated alcohol electrolytes: Arrhenius vs. non-Arrhenius behavior Fleshman AM, Petrowsky M, Jernigen JD, Bokalawela RSP, Johnson MB, Frech R Electrochimica Acta, 57, 147, 2011 |