Facile synthesis of green engineered CuO/Cu2O-C nano heterostructures with the controlled Cu2O content for the photodegradation of crystal violet

结晶紫 光降解 材料科学 单斜晶系 纳米复合材料 光催化 微晶 纳米材料 化学工程 氧化铜 核化学 带隙 纳米技术 氧化物 晶体结构 化学 有机化学 光电子学 催化作用 工程类 病理 冶金 医学
作者
Lakshmi Madhuri Peddada,Phyu Phyu Cho,Saarthak Dulgaj,A. Ratnamala,Phani Raja Kanuparthy
出处
期刊:Results in optics [Elsevier]
卷期号:13: 100537-100537 被引量:1
标识
DOI:10.1016/j.rio.2023.100537
摘要

Copper oxide/cuprous oxide and carbon heterostructured nanocomposites (CuO/Cu2O-C NCs) were fabricated using an agro-biomass wheatgrass extract (WGE), presenting an innovative, eco-friendly, and facile green synthetic approach. The CuO/Cu2O-C nanocomposites engineered using WGE were extensively characterized using UV-Vis, IR, XRD, DLS, XPS, SEM, TEM, BET, and TGA characterization techniques. The synthesized CuO/Cu2O-C NCs were crystalline with a monoclinic phase and an average crystallite size of 32 nm, as confirmed by XRD. Tauc plots were utilized to calculate the band gap energies (2.05 and 1.53 eV). The synthetic procedure is optimized, and the effect of plant extract in the controlled synthesis of Cu2O content in the CuO/Cu2O-C NCs was investigated. These green CuO/Cu2O-C NCs were tested for photocatalytic activity. A detailed kinetic study was conducted to degrade pathological effluent crystal violet (CV). The nanocomposite with a higher concentration of Cu2O is potentially a superior photocatalyst and demonstrated an excellent synergistic action, removing around 80% of the crystal violet stain in visible light. Apart from photodegradation, these CuO/Cu2O-C NCs were good antioxidants and displayed good antibacterial activity against the gram-positive and gram-negative bacterial strains. The key highlight of this work is the low-cost disruptive engineering strategy for synthesizing frugal nanomaterials for multifaceted applications.

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