An efficient green synthesis of ag/Fe2O3 nanocomposite using Carica Papaya peel extract for enhanced photocatalytic, antioxidant, and antibacterial activities

IF 2.5 Q2 CHEMISTRY, MULTIDISCIPLINARY
Tahir Hamza Endres, Ahmed Awol Yimer, Tamene Tadesse Beyene, Guta Gonfa Muleta
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引用次数: 0

Abstract

Dye waste pollution poses a significant threat to human health and the environment. Photocatalysis can be used to degrade dyes in industrial wastes. This study aims to synthesize nanocrystals of Fe2O3 and Ag-doped Fe2O3 using Carica papaya linn peel extract as a reducing agent and ferric chloride hexahydrate and silver nitrate as precursors. The synthesized nanocrystals were investigated using UV–Vis, XRD, FT-IR, and SEM to confirm band shifts, crystallinity, functional groups, and morphological improvements. As a result, pure Fe2O3-NPs shifted their absorption band from 296 to 347 nm after incorporating Ag. In addition to the band shift, the energy bandgap was reduced from 3.34 to 2.91 eV as a result of the band shift. Based on the XRD patterns, Fe2O3-NPs have an average crystalline size of 26.72 nm, while Ag/Fe2O3 NCs have an average crystalline size of 29.17 nm. A highly enhanced photocatalytic performance was achieved with pristine Fe2O3-NPs due to Ag integration, and MB dye degradation was increased to 92.97 % from 72 %. Gram-positive and Gram-negative bacteria were killed by Ag/Fe2O3-NCs. The zone of inhibition for Ag/Fe2O3-NCs against B. cereus, S. aureus, S. typhi, and E. coli was estimated to be 19.5 mm, 19 mm, 18 mm, and 16.2 mm, respectively. Moreover, the nanomaterials' antioxidant activities were evaluated using a DPPH scavenging assay, with the IC50 values for the antioxidant activity of Ag/Fe2O3-NCs calculated to be 15.38 μg/mL. Based on these results, Ag/Fe2O3-NCs could be used as a useful photocatalyst for water treatment, pathogenic disinfection, and antioxidant tools.

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来源期刊
Results in Chemistry
Results in Chemistry Chemistry-Chemistry (all)
CiteScore
2.70
自引率
8.70%
发文量
380
审稿时长
56 days
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