Ziya Afroz
Aligarh Muslim University
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Publication
Featured researches published by Ziya Afroz.
DAE SOLID STATE PHYSICS SYMPOSIUM 2015 | 2016
Ziya Afroz; Mohammad Jane Alam; Zulkarnain; Mohd Faizan; Afaq Ahmad; Shabbir Ahmad
DFT and TD-DFT studies of o-phenylenediamine (PDA), 3,5-dinitrosalicylic acid (DNSA) and their charge transfer complex have been carried out at B3LYP/6-311G(d,p) level of theory. Molecular geometry and various other molecular properties like natural atomic charges, ionization potential, electron affinity, band gap, natural bond orbital (NBO) and frontier molecular analysis have been presented at same level of theory. Frontier molecular orbital and natural bond orbital analysis show the charge delocalization from PDA to DNSA.
Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy | 2018
Mohd Faizan; Mohammad Jane Alam; Ziya Afroz; Sheeraz Ahmad Bhat; Shabbir Ahmad
Vibrational spectra of 2-aminopyridine (2AP) have been analyzed using the vibrational self-consistence field theory (VSCF), correlated corrected vibrational self-consistence field theory (CC-VSCF) and vibrational perturbation theory (VPT2) at B3LYP/6-311G(d,p) framework. The mode-mode couplings affect the vibrational frequencies and intensities. The coupling integrals between pairs of normal modes have been obtained on the basis of quartic force field (2MR-QFF) approximation. The overtone and combination bands are also assigned in the FTIR spectrum with the help of anharmonic calculation at VPT2 method. A statistical analysis of deviations shows that estimated anharmonic frequencies are closer to the experiment over harmonic approximation. Furthermore, the anharmonic correction has also been carried out for the dimeric structure of 2AP. The fundamental vibration bands have been assigned on the basis of potential energy distribution (PED) and visual look over the animated modes. Other important molecular properties such as frontier molecular orbitals and molecular electrostatics potential mapping have also been analyzed.
Archive | 2018
Mohd Faizan; Ziya Afroz; Sheeraz Ahmad Bhat; Mohamad Jane Alam; Shabbir Ahmad; Afaq Ahmad
The charge transfer (CT) complex of the 2-amino-4-hydroxy-6-methylpyrimidine and 2,3 pyrazinedicarboxylic acid (PDCA-.AHMP+) was synthesized and its single crystal was grown by solution method. The structure of the crystalline complex has been investigated by single crystal X-ray diffraction (SCXRD). The vibrational features of the complex have been studied with the help of FTIR spectra and DFT computation. The anharmonic corrections in vibrational frequencies are made using the GVPT2 method at B3LYP/6-311++G(d,p) level of theory. The frontier molecular orbitals and global chemical reactivity have been calculated to understand the pharmacological aspect of the synthesized crystal. Furthermore, Hirshfeld electrostatic potential (ESP) surface, void space in the crystal structure and natural as well as Mulliken atomic charges are studied.
Archive | 2018
Mohd Faizan; Ziya Afroz; Mohammad Jane Alam; Sheeraz Ahmad Bhat; Shabbir Ahmad; Afaq Ahmad
The intermolecular interactions in complex formation between 2-amino-4-hydroxy-6-methylpyrimidine (AHMP) and 2,3-pyrazinedicarboxylicacid (PDCA) have been explored using density functional theory calculations. The isolated 1:1 molecular geometry of proton transfer (PT) complex between AHMP and PDCA has been optimized on a counterpoise corrected potential energy surface (PES) at DFT-B3LYP/6-31G(d,p) level of theory in the gaseous phase. Further, the formation of hydrogen bonded charge transfer (HBCT) complex between PDCA and AHMP has been also discussed. PT energy barrier between two extremes is calculated using potential energy surface (PES) scan by varying bond length. The intermolecular interactions have been analyzed from theoretical perspective of natural bond orbital (NBO) analysis. In addition, the interaction energy between molecular fragments involved in the complex formation has been also computed by counterpoise procedure at same level of theory.The intermolecular interactions in complex formation between 2-amino-4-hydroxy-6-methylpyrimidine (AHMP) and 2,3-pyrazinedicarboxylicacid (PDCA) have been explored using density functional theory calculations. The isolated 1:1 molecular geometry of proton transfer (PT) complex between AHMP and PDCA has been optimized on a counterpoise corrected potential energy surface (PES) at DFT-B3LYP/6-31G(d,p) level of theory in the gaseous phase. Further, the formation of hydrogen bonded charge transfer (HBCT) complex between PDCA and AHMP has been also discussed. PT energy barrier between two extremes is calculated using potential energy surface (PES) scan by varying bond length. The intermolecular interactions have been analyzed from theoretical perspective of natural bond orbital (NBO) analysis. In addition, the interaction energy between molecular fragments involved in the complex formation has been also computed by counterpoise procedure at same level of theory.
Journal of Molecular Structure | 2017
Mohd Faizan; Sheeraz Ahmad Bhat; Mohammad Jane Alam; Ziya Afroz; Shabbir Ahmad
Archive | 2018
Ziya Afroz; Mohd Faizan; Mohammad Jane Alam; Shabbir Ahmad; Afaq Ahmad
Journal of Molecular Structure | 2018
Mohd Faizan; Mohammad Jane Alam; Ziya Afroz; V. H. Rodrigues; Shabbir Ahmad
Journal of Molecular Structure | 2019
Mohd Faizan; Ziya Afroz; Mohammad Jane Alam; V. H. Rodrigues; Shabbir Ahmad; Afaq Ahmad
Archive | 2018
Ziya Afroz; Mohd Faizan; Mohammad Jane Alam; Shabbir Ahmad; Afaq Ahmad
Journal of Molecular Structure | 2018
Ziya Afroz; Mohd Faizan; Mohammad Jane Alam; V. H. Rodrigues; Shabbir Ahmad; Afaq Ahmad