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Department of Chemistry, Sri Venkateswara College (University of Delhi), Dhaula kuan, New Delhi-110 021, India E-mail : hctwave@yahoo.co.in, mmudassirh@rediffmail. com Manuscript received 23 August 2006, accepted 7 November 2006 Molecular geometries, static polarizabilities and energetics have been calculated for the boroxopyrrole (isoelectronic to pyrrole) homologues including boroxopyrrole (B2 O2H3N), boroxophosphorylpyrrole (B2 O2 H3P),boroxoarsenylpyrrole (B2O2H3As) and boroxoantimonylpyrrole (B2O2H3Sb) at the Hartree-Fock by ab initio and Density Functional Theory (DFT) by choosing combined exchange correlation potentials B3LYP and B3PW91. All the calculations utilized the 6-311G basis set for lighter atoms and 3-21G for heavier atoms The influence of substitution with heavy atoms on molecular properties of the homologues was examined theoretically. The calculated results here, show that substitution of the heteroatom with heavy atoms, systematically, increases the individual components of static polarizability, α. This property has been discussed in term of Highest Occupied Molecular Orbital (HOMO) and Lowest Unoccupied Molecular Orbital (LUMO) energies. Further, to check the adequacy of the method and the suitability of the basis set, the normal mode frequencies in C2v symmetry was examined theoretically for B2O2H3N and compared with available experimental data.
energetics, boroxopyrrole, Polarizability, dipole moment, HOMO-LUMO RHF, DFT
energetics, boroxopyrrole, Polarizability, dipole moment, HOMO-LUMO RHF, DFT
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