Comparison of Electrical Conductivity and Schottky Behavior of 4‐[2‐(9‐anthryl)vinyl]pyridine Based Two 1D Coordination Polymers of Zn(II) and Cd(II)

Author:

Hossain Ersad1,Sk Ramjan2,Das Mainak2,Goura Joydeb3,Roy Sourav4,Ray Partha Pratim2,Mir Mohammad Hedayetullah5ORCID,Frontera Antonio6ORCID,Mukhopadhyay Subrata1

Affiliation:

1. Department of Chemistry Jadavpur University Kolkata 700 032 India

2. Department of Physics Jadavpur University Kolkata 700 032 India

3. Chemistry Department Delhi University Delhi 110 007 India

4. Solid State and Structural Chemistry Unit Indian Institute of Science Bangalore 560 012 India

5. Chemistry Department Aliah University, New Town Kolkata 700 160 India

6. Departament de Quimica, Universitat de les Illes Balears Crta de Valldemossa km 7.5 07122 Palma de Mallorca (Baleares) Spain

Abstract

AbstractWith the increase in demand of electronic devices in the modern civilization, research in material science is being projected to grow in faster rate. In this facet, coordination polymer (CP) based electronic device is one of the promising candidates to the material researchers. Herein, two new Zn(II) and Cd(II) based one‐dimensional (1D) CPs, denoted as [Zn(4‐avp)2(5‐nip)] ⋅ (solvent)x (1) and [Cd(4‐avp)(5‐nip)(CH3OH)] (2) have been synthesized using relatively less explored highly conjugated polycyclic aromatic hydrocarbon (PAH) based monodentate ligand, 4‐[2‐(9‐anthryl)vinyl]pyridine (4‐avp) and bidentate linker 5‐nitroisophthalic acid (H25‐nip). In this instance, the CP 1 creates 1D chain polymer, while CP 2 is made up with 1D ladder polymer. It is interesting to note that both the CPs exhibit semiconducting nature and generate metal‐semiconductor (MS) junction Schottky barrier diodes (SBDs). However, Cd‐based CP 2 shows higher charge transport as compared to Zn‐CP 1, which could be due to stronger π⋅⋅⋅π contacts as well as larger size of Cd metal in CP 2. The experimental results are well corroborated with theoretical density of states (DOS) calculations.

Publisher

Wiley

Reference60 articles.

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