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Low-temperature phyto-synthesis of copper oxide nanosheets: Its catalytic effect and application for colorimetric sensing

机译:低温氧化铜纳米型植物合成:其催化效果及对比色感测的应用

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摘要

The last decade has seen a remarkable detonation in modifying chemical processes for nanomaterial synthesis to make them 'green'. Owing to the unique properties of nanomaterial and with regard to environmental issues, in this study, a new alternative and fast eco-friendly approach for the synthesis of copper oxide nanosheets (CuO-NSs) using Terminalia catappa (Indian almond) leaf extract as a renewable and non-toxic reducing agent and efficient stabilizer was reported. It is noteworthy to mention that the present fabrication process can open up the possibility of fast, low cost and high efficiency synthesis of CuO nanostructures with an interesting morphology of nanosheets at ambient temperature and pressure. Optimization of important factors such as pH, the quantity of leaf extract, copper precursor concentration, incubation time and temperature on the formation of CuO-NSs were investigated. The formation of bioreduced CuO-NSs was certified by UV-Vis spectroscopy, XRD, TEM analysis and FT-IR spectroscopy. Due to good stability, and excellent catalytic activity of the synthesized CuO-NSs, they are exerted to degrade of MB dye in water as a model color pollutant in the presence of NaBH4 at room temperature. Furthermore, color properties of CuO nanostructures aid us to apply these biosynthesized nanomaterials in the design of optical sensors for detection of Fe2+ and Fe3+ ions. In view of many advantages of the current optical sensors based on CuO-NSs, such as eco-friendly, cost-effective, and straightforward design, the sensing system presents a potential application in environmental science.
机译:过去十年来看,在改变纳米材料综合的化学过程中,对其进行了显着的爆炸,使其成为“绿色”。由于纳米材料的独特性和关于环境问题的特性,在本研究中,使用终端炎Catappa(印度杏仁)叶提取物作为合成氧化铜纳米片(CuO-NSS)的新替代和快速环保方法报道了可再生和无毒的还原剂和有效的稳定剂。值得注意的是,提及本制造过程可以开辟Cuo纳米结构的快速,低成本和高效合成的可能性,在环境温度和压力下具有纳米片的有趣形态。研究了PH,叶片提取物,铜前体浓度,孵育时间和温度的重要因素优化,对CuO-NSS的形成。 Bioredued CuO-NSS的形成通过UV-Vis光谱,XRD,TEM分析和FT-IR光谱证明。由于良好的稳定性和合成的CuO-NSS的优异催化活性,它们在室温下在NaBH 4存在下,它们在水中降解水中的MB染料作为模型污染物。此外,CuO纳米结构的颜色性质有助于我们在光学传感器设计中施加这些生物合成的纳米材料,用于检测Fe2 +和Fe3 +离子。鉴于基于CUO-NSS的电流光学传感器的许多优点,例如环保,经济高效和简单的设计,传感系统呈现在环境科学中的潜在应用。

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