ANALYSIS OF THE KAMLET-TAFT PARAMETER AND SOLVENT EFFECTS ON THE RNA ZN MOLECULE’S ENERGY BAND GAP.
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Abstract
The RNA Zn molecule's electronic absorption and fluorescence emission spectra swere obtained at room temperature in various organic solvents with variable polarity. The solvent-solute interactions were described using Kamlet Taft parameters. The acquired results demonstrated that a compound's solvatochromic behavior depends on both the polarity of the solvent and the impact of the solvents' hydrogen-bonding characteristics. Based on the data collected, it can be concluded that this RNA Zn molecule has numerous uses, including a DNA cleavage and antibacterial and antifungal properties. In order to comprehend the photoluminescent property of RNA Zn, CIE chromaticity analysis was carried out. Additionally, the optoelectronic properties were examined, including CIE, CRI, and color purity (CIE Coordinates x=0.14,y=0.08). This is appropriate for OLEDs, which are best suited for daylight applications