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The Journal of Physical Chemistry. B|November 25, 2023
Predicting Polymer Brush Behavior in Solvents Using the Steepest-Entropy-Ascent Quantum Thermodynamic FrameworkJared McDonald, Michael R von Spakovsky, William T ReynoldsEnvironmental Science and Pollution Research International|August 18, 2023
Graphene oxide-coated Ag-TiO2 hybrid nanocomposites for superior photocatalytic activityDavinder Kaur, Karanveer Singh, William T Reynolds, et al.Journal of Chemical Theory and Computation|May 13, 2026
Energy Eigenstates of Electrons, Magnons, and Phonons in Fe3O4 (Magnetite), MnFe2O4 (Jacobsite), and Mixed Mn-Zn FerritesDeepak Dhariwal, Michael R von Spakovsky, William T ReynoldsJournal of Physics. Condensed Matter : an Institute of Physics Journal|July 3, 2018
A method for predicting non-equilibrium thermal expansion using steepest-entropy-ascent quantum thermodynamicsRyo Yamada, Michael R von Spakovsky, William T ReynoldsOptometry (St. Louis, Mo.)|March 21, 2003
Vision examinations for all children entering public school--the new Kentucky lawJoel N Zaba, Roger A Johnson, William T ReynoldsJournal of Physics. Condensed Matter : an Institute of Physics Journal|August 31, 2019
Low-temperature atomistic spin relaxation and non-equilibrium intensive properties using steepest-entropy-ascent quantum-inspired thermodynamics modelingRyo Yamada, Michael R von Spakovsky, William T ReynoldsPhysical Review. E|June 20, 2019
Predicting continuous and discontinuous phase decompositions using steepest-entropy-ascent quantum thermodynamicsRyo Yamada, Michael R von Spakovsky, William T ReynoldsThe Journal of Chemical Physics|March 15, 2023
Predicting non-equilibrium folding behavior of polymer chains using the steepest-entropy-ascent quantum thermodynamic frameworkJared McDonald, Michael R von Spakovsky, William T ReynoldsNanomaterials (Basel, Switzerland)|March 12, 2024
Predicting Ion Sequestration in Charged Polymers with the Steepest-Entropy-Ascent Quantum Thermodynamic FrameworkJared McDonald, Michael R von Spakovsky, William T ReynoldsJournal of Physics. Condensed Matter : an Institute of Physics Journal|November 17, 2022
Predicting defect stability and annealing kinetics in two-dimensional PtSe2using steepest entropy ascent quantum thermodynamicsAimen Younis, Fazel Baniasadi, Michael R von Spakovsky, et al.Pageof 3