Standout Papers

Harmonic Vibrational Frequencies:  An Evaluation ... 1970 2026 1988 2007 6.1k
  1. Harmonic Vibrational Frequencies:  An Evaluation of Hartree−Fock, Møller−Plesset, Quadratic Configuration Interaction, Density Functional Theory, and Semiempirical Scale Factors (1996)
    Anthony P. Scott, Leo Radom The Journal of Physical Chemistry
  2. An Evaluation of Harmonic Vibrational Frequency Scale Factors (2007)
    Jeffrey Merrick, Damian Moran et al. The Journal of Physical Chemistry A
  3. Extension of Gaussian-2 theory to molecules containing third-row atoms Ga–Kr (1995)
    Larry A. Curtiss, Mark P. McGrath et al. The Journal of Chemical Physics
  4. Extension of Gaussian-2 (G2) theory to molecules containing third-row atoms K and Ca (1997)
    Jean‐Philippe Blaudeau, Mark P. McGrath et al. The Journal of Chemical Physics
  5. Molecular orbital theory of the electronic structure of organic compounds. V. Molecular theory of bond separation (1970)
    Warren J. Hehre, R. Ditchfield et al. Journal of the American Chemical Society
  6. Scaling Factors for Obtaining Fundamental Vibrational Frequencies and Zero‐Point Energies from HF/6–31G* and MP2/6–31G* Harmonic Frequencies (1993)
    John A. Pople, Anthony P. Scott et al. Israel Journal of Chemistry
  7. Factors Controlling the Addition of Carbon‐Centered Radicals to Alkenes—An Experimental and Theoretical Perspective (2001)
    Hanns Fischer, Leo Radom Angewandte Chemie International Edition
  8. Extension of Gaussian-1 (G1) theory to bromine-containing molecules (1991)
    Mark P. McGrath, Leo Radom The Journal of Chemical Physics
  9. Extension of Gaussian-2 (G2) theory to bromine- and iodine-containing molecules: Use of effective core potentials (1995)
    Mikhail N. Glukhovtsev, Addy Pross et al. The Journal of Chemical Physics
  10. Molecular orbital theory of the electronic structure of organic compounds. XIII. Fourier component analysis of internal rotation potential functions in saturated molecules (1972)
    Leo Radom, Warren J. Hehre et al. Journal of the American Chemical Society
  11. Molecular orbital theory of the electronic structure of organic compounds. VIII. Geometries, energies, and polarities of C3 hydrocarbons (1971)
    Leo Radom, William A. Lathan et al. Journal of the American Chemical Society
  12. Molecular orbital theory of the electronic structure of organic compounds. VII. Systematic study of energies, conformations, and bond interactions (1971)
    John A. Pople, Leo Radom et al. Journal of the American Chemical Society
  13. Molecular orbital theory of the electronic structure of organic compounds. XII. Conformations, stabilities, and charge distributions in monosubstituted benzenes (1972)
    Warren J. Hehre, Leo Radom et al. Journal of the American Chemical Society
  14. Molecular orbital theory of the electronic structure of organic compounds. IV. Internal rotation in hydrocarbons using a minimal Slater-type basis (1970)
    Leo Radom, John A. Pople Journal of the American Chemical Society
  15. Molecular orbital theory of the electronic structure of organic compounds. XVII. Internal rotation in 1,2-disubstituted ethanes (1973)
    Leo Radom, William A. Lathan et al. Journal of the American Chemical Society
  16. Transition structures for the interchange of hydrogen atoms within the water dimer (1990)
    Brian J. Smith, David J. Swanton et al. The Journal of Chemical Physics
  17. Strong conformational consequences of hyperconjugation (1972)
    Roald Hoffmann, Leo Radom et al. Journal of the American Chemical Society

Immediate Impact

76 by Nobel laureates 10 from Science/Nature 126 standout
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2 intermediate papers

Works of Leo Radom being referenced

Factors Controlling the Addition of Carbon‐Centered Radicals to Alkenes—An Experimental and Theoretical Perspective
2001 Standout
Harmonic Vibrational Frequencies:  An Evaluation of Hartree−Fock, Møller−Plesset, Quadratic Configuration Interaction, Density Functional Theory, and Semiempirical Scale Factors
1996 Standout
and 6 more

Author Peers

Author Last Decade Papers Cites
Leo Radom 16016 17070 8284 9285 533 36.9k
H. Bernhard Schlegel 18561 17663 7557 7649 443 45.2k
Mark S. Gordon 24974 16156 11007 9914 555 53.5k
Keiji Morokuma 17900 17928 7818 7707 828 49.5k
John A. Montgomery 12574 12473 5933 4878 463 36.0k
Kenneth B. Wiberg 10526 17999 7887 7417 496 33.9k
Nicholas C. Handy 25329 8553 8282 11049 373 41.6k
Fernando Bernardi 14408 8505 9908 6855 259 30.3k
Walter Thiel 15085 15188 7652 6602 719 45.3k
Krishnan Raghavachari 29483 16711 7450 9371 398 52.2k
Michael J. S. Dewar 11566 21089 9920 7603 490 41.0k

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