E. Soydas And U. Bozkaya, "Assessment of Orbital-Optimized MP2.5 for Thermochemistry and Kinetics: Dramatic Failures of Standard Perturbation Theory Approaches for Aromatic Bond Dissociation Energies and Barrier Heights of Radical Reactions," JOURNAL OF CHEMICAL THEORY AND COMPUTATION , vol.11, no.4, pp.1564-1573, 2015
Soydas, E. And Bozkaya, U. 2015. Assessment of Orbital-Optimized MP2.5 for Thermochemistry and Kinetics: Dramatic Failures of Standard Perturbation Theory Approaches for Aromatic Bond Dissociation Energies and Barrier Heights of Radical Reactions. JOURNAL OF CHEMICAL THEORY AND COMPUTATION , vol.11, no.4 , 1564-1573.
Soydas, E., & Bozkaya, U., (2015). Assessment of Orbital-Optimized MP2.5 for Thermochemistry and Kinetics: Dramatic Failures of Standard Perturbation Theory Approaches for Aromatic Bond Dissociation Energies and Barrier Heights of Radical Reactions. JOURNAL OF CHEMICAL THEORY AND COMPUTATION , vol.11, no.4, 1564-1573.
Soydas, Emine, And UĞUR BOZKAYA. "Assessment of Orbital-Optimized MP2.5 for Thermochemistry and Kinetics: Dramatic Failures of Standard Perturbation Theory Approaches for Aromatic Bond Dissociation Energies and Barrier Heights of Radical Reactions," JOURNAL OF CHEMICAL THEORY AND COMPUTATION , vol.11, no.4, 1564-1573, 2015
Soydas, Emine And Bozkaya, UĞUR. "Assessment of Orbital-Optimized MP2.5 for Thermochemistry and Kinetics: Dramatic Failures of Standard Perturbation Theory Approaches for Aromatic Bond Dissociation Energies and Barrier Heights of Radical Reactions." JOURNAL OF CHEMICAL THEORY AND COMPUTATION , vol.11, no.4, pp.1564-1573, 2015
Soydas, E. And Bozkaya, U. (2015) . "Assessment of Orbital-Optimized MP2.5 for Thermochemistry and Kinetics: Dramatic Failures of Standard Perturbation Theory Approaches for Aromatic Bond Dissociation Energies and Barrier Heights of Radical Reactions." JOURNAL OF CHEMICAL THEORY AND COMPUTATION , vol.11, no.4, pp.1564-1573.
@article{article, author={Emine Soydas And author={UĞUR BOZKAYA}, title={Assessment of Orbital-Optimized MP2.5 for Thermochemistry and Kinetics: Dramatic Failures of Standard Perturbation Theory Approaches for Aromatic Bond Dissociation Energies and Barrier Heights of Radical Reactions}, journal={JOURNAL OF CHEMICAL THEORY AND COMPUTATION}, year=2015, pages={1564-1573} }