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Cu(ii)-Based binuclear compound for the application of photosensitive electronic devices†
Basudeb Dutta,Arka Dey,Kaushik Naskar,Faruk Ahmed,Rakesh Purkait,Sakhiul Islam,Soumen Ghosh,Chittaranjan Sinha,Partha Pratim Ray,Mohammad Hedayetullah Mir
New Journal of Chemistry Pub Date : 04/02/2018 00:00:00 , DOI:10.1039/C8NJ00313K
Abstract

In this study, an acetylenedicarboxylate based binuclear Cu(II) compound [Cu2(adc)(4-pic)6(H2O)4][ClO4]2 (1) (H2adc = acetylenedicarboxylic acid and 4-pic = 4-picolene) has been synthesized and well characterized using elemental analysis, infrared (IR) spectra, thermogravimetric analysis (TGA), powder X-ray diffraction (PXRD) patterns and single crystal X-ray diffraction (SCXRD) techniques. The binuclear compound undergoes hydrogen bonding interactions to form a 1D hydrogen bonded aggregate, which further undergoes extensive edge-to-face C–H⋯π interactions to form a 3D supramolecular motif. The current conductivity of compound 1 was recorded under dark and illuminated conditions. Interestingly, the measured IV characteristics of the synthesized material in the dark and under the illumination of incident light exhibit a highly non-linear rectifying behavior signifying a Schottky diode nature. Furthermore, the enhancement of values of the electrical parameters after exposure to illumination of incident radiation indicates the light sensing behaviour of the material. Therefore, the material can be used as a promising candidate in photosensitive electronic devices.

Graphical abstract: Cu(ii)-Based binuclear compound for the application of photosensitive electronic devices
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