Terpyridine-metal complexes: effects of different substituents on their physico-chemical properties and density functional theory studies

Author:

Mughal Ehsan Ullah1,Mirzaei Masoud2ORCID,Sadiq Amina3,Fatima Sana1,Naseem Ayesha1,Naeem Nafeesa1,Fatima Nighat4,Kausar Samia1,Altaf Ataf Ali15ORCID,Zafar Muhammad Naveed6,Khan Bilal Ahmad7

Affiliation:

1. Department of Chemistry, University of Gujarat, Gujarat 50700, Pakistan

2. Department of Chemistry, Faculty of Science, Ferdowsi University of Mashhad, PO Box 9177948974, Mashhad, Iran

3. Department of Chemistry, Government College Women University, Sialkot 51300, Pakistan

4. Department of Pharmacy, COMSATS University Islamabad, Abbottabad Campus, 22060, Pakistan

5. Department of Chemistry, University of Okara, Okara 56300, Pakistan

6. Department of Chemistry, Quaid-i-Azam University, Islamabad 45320, Pakistan

7. Department of Chemistry, University of Azad Jammu and Kashmir, Muzaffarabad, Pakistan

Abstract

A series of different substituted terpyridine (tpy)-based ligands have been synthesized by Kröhnke method. Their binding behaviour was evaluated by complexing them with Co(II), Fe(II) and Zn(II) ions, which resulted in interesting coordination compounds with formulae, [Zn(tpy) 2 ]PF 6 , [Co(tpy) 2 ](PF 6 ) 2 , [Fe(tpy) 2 ](PF 6 ) 2 and interesting spectroscopic properties. Their absorption and emission behaviours in dilute solutions were investigated in order to explain structure–property associations and demonstrate the impact of different aryl substituents on the terpyridine scaffold as well as the role of the metal on the complexes. Photo-luminescence analysis of the complexes in acetonitrile solution revealed a transition from hypsochromic to bathochromic shift. All the compounds displayed remarkable photo-luminescent properties and various maximum emission peaks owing to the different nature of the functional groups. Furthermore, the anti-microbial potential of ligands and complexes was evaluated with docking analyses carried out to investigate the binding affinity of terpyridine-based ligands along with corresponding proteins (shikimate dehydrogenase and penicillin-binding protein) binding sites. To obtain further insight into molecular orbital distributions and spectroscopic properties, density functional theory calculations were performed for representative complexes. The photophysical activity and interactions between chromophore structure and properties were both investigated experimentally as well as theoretically.

Publisher

The Royal Society

Subject

Multidisciplinary

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