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New polyvinyl alcohol/carbon quantum dots (PVA/CQDs) nanocomposite films: Structural, optical and catalysis properties

机译:新型聚乙烯醇/碳量子点(PVA / CQDS)纳米复合膜:结构,光学和催化性能

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In this literature, new PVA/CQDs nano-composites films were made-up via solution casting approach for the methylene blue dye removal from wastewater. PVA/CQDs nano-composite films were achieved by the marriage of PVA and the CQDs nano-particles, after the preparation of zero-dimension CQDs nano-particles by microwave heating process. The characterization and the optical properties of PVA/CQDs nano-composite films were reported by using X-ray diffraction (XRD), the Fourier Transformation Infrared Spectroscopy (FTIR) and the Uv-vis spectrophotometer. The application of (PVA/CQDs) nano-composite to remove the wastewater dye was performed. The XRD patterns and FTIR spectra confirmed that the strong interaction between PVA polymer and CQDs nano-particles via hydrogen bonding. The tunable structure and optical properties of PVA/CQDs nanocomposite are attributed to the concentrations of CQDs nano-particles embedded in PVA matrix. The experiments of the adsorption process, at room temperature, showed that (PVA/CQDs 2 wt.%) nano-composites have the ability to eliminate a large concentration of the methylene blue dye (30 mg/L) from aqueous solution with removal efficiency about 97 +/- 1% after 40 min. In addition, the adsorption behavior submitted to the linear model of Freundlich isotherm and non-linear pseudo-first-order model. Also, PVA/CQDs can be reused five times after regeneration without any loss of their efficiency (removal approximate to 97 +/- 1%). Finally, PVA/CQDs nano-composite films are expected to fmd applications in anti-ultraviolet, catalytic water decomposition and desalination.
机译:在该文献中,通过溶液浇铸方法进行了新的PVA / CQDS纳米复合材料,用于从废水中去除亚甲基蓝染料。通过微波加热过程制备零维度CQDS纳米颗粒后PVA和CQDS纳米颗粒的婚姻实现PVA / CQDS纳米复合膜。通过使用X射线衍射(XRD),傅立叶变换红外光谱(FTIR)和UV-Vis分光光度计来报告PVA / CQDS纳米复合膜的表征和光学性质。 (PVA / CQDS)纳米复合材料去除废水染料的施加。 XRD图案和FTIR光谱证实,PVA聚合物和CQDS纳米颗粒之间的强相互作用通过氢键合。 PVA / CQDS纳米复合材料的可调谐结构和光学性能归因于嵌入PVA基质中的CQDS纳米颗粒的浓度。在室温下吸附过程的实验表明(PVA / CQDS 2重量%)纳米复合材料具有从具有除去效率的水溶液中消除大浓度的亚甲基蓝色染料(30mg / L) 40分钟后约97 +/- 1%。此外,吸附行为提交给Freundlich等温线的线性模型和非线性伪第一阶模型。此外,PVA / CQDS可以在再生后重复使用五次,而不会损失其效率(移除近似为97 +/- 1%)。最后,预计PVA / CQDS纳米复合薄膜预计抗紫外线,催化水分解和脱盐中的FMD应用。

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