Isoniazid Based Zn(II) Coordination Compound for Potential Energy Applications: Synthesis, Structure, Topology and Theoretical Interpretation

Manik Shit1,2

Barun Kumar Mondal2

Sk Mohammad Aziz2

Soumendu Bisoi2

Swapan Sinha3

Gourisankar Roymahapatra3

Zhanhu Guo4

Chittaranjan Sinha1,Email

1Department of Chemistry, Jadavpur University, Kolkata, West Bengal, 700032, India
2Department of Chemistry, Narajole Raj College, Narajole, West Bengal, 721211, India
3Department of Applied Science, Haldia Institute of Technology, Haldia, West Bengal, 721657, India
4Department of Mechanical & Construction Engineering, Northumbria University, Newcastle, NE1 8ST, United Kingdom

Abstract

{[Zn(L)2]}n(1) [HL= N'-(propan-2-ylidene)isonicotinohydrazide], is characterized by single crystal X-ray diffraction measurement. The HL acts as monoanionic bridging ligand consisting of pyridyl-N coordination to one Zn(II) centre and hydrazine-N,O chelation to neighbouring Zn(II) centre to form Zn(N,O, N/)2 coordination sphere (N = Pyridyl-N; N/ = hydrazide-N and O = hydrazide-O). Zn(II) lies at the centrosymmetric position. Thus, chelatative bridging of two L- to Zn(II) propagate almost perpendicularly to form 2D coordination polymer (2D CP). Various non-covalent interactions in the coordinated ligand frame contribute to building a 3D supramolecular network which has been supported by Hirshfeld surface analysis. The Density Functional Theory (DFT) computation of the monomeric unit, using crystallographic parameters of the compound 1, yielded a calculated band gap (EHOMO – ELUMO) (HOMO = highest occupied molecular orbital and LUMO = lowest unoccupied molecular orbital) of 1.36 eV. Bader's Quantum Theory of "Atoms in Molecules" (AIM) was employed at bond critical points (BCPs), providing insight into electron density distribution and bonding characteristics between the chelating ligand and the metal center. Additionally, Principle Interacting Orbital (PIO) analysis further elucidates the nature and strength of the orbital interactions within the compound.