Unrestricted Hartree-Fock Investigation of the Electron Distribution on the Heme System in Azidohemoglobin-$^{57m}$Fe and $^{14}$N Hyperfine Interactions.

ORAL

Abstract

We have a program of investigations in progress on the electronic structure of azidohemoglobin by the first-principles Unrestricted Hartree-Fock procedure to understand the substantial amount of magnetic (g-tensor), magnetic hyperfine, and nuclear quadrupole interaction, data available [1] from electron paramagnetic resonance, Mosbauer and electron-nuclear double resonance measurements. Earlier semi-empirical Self-Consistent Charge Extended Huckel investigations have provided semiquantitative results [2] with different degrees of agreement for the available properties and suggested the need for more accurate and quantitative investigations. Results of our investigations will be presented for the $^{57m}$Fe and $^{14}$N nuclear quadrupole and magnetic hyperfine interaction properties and compared with experimental data. *Also UCF Orlando [1] See Refs. 2-4 listed in Ref.[2]. [2] Santosh K. Mishra, J.N. Roy, K.C. Mishra and T.P. Das, Theo. Chim. Acta 75, 195(1989).

Authors

  • Archana Dubey

    • University of Central Florida, Orlando
  • H.P. Saha

  • Lee Chow

    • University of Central Florida, Orlando
    • UCF, Orlando
    • UCF Orlando
  • R.H. Scheicher

    • Michigan Technological University, Houghton
    • MTU, Houghton
    • MTU Houghton
    • Michigan Technological University. Houghton
  • N. Sahoo

  • R.H. Pink

  • Dip N. Mahato

  • M.B. Huang

  • T.P. Das

    • State University of New York at Albany
    • SUNY Albany