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ZnO-pHEMA Nanocomposites: An Ecofriendly and Reusable Material for Water Remediation

机译:ZnO-Phema纳米复合材料:用于水处理的Ecofriendly和可重复使用的材料

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摘要

The design of new hybrid nanocomposites based on poly(2-hydroxyethylmethacrylate) (pHEMA) graphene oxide (GO) cryosponges, wherein ZnO nanolayers have been deposited to induce photocatalytic properties, is reported here. Atomic layer deposition at low temperature is specifically selected as the deposition technique to stably anchor ZnO molecules to the pendant polymer OH groups. Furthermore, to boost the pHEMA cryogel adsorption capability versus organic dyes, GO is added during the synthetic procedure. The morphology, the crystallinity, and the chemical composition of the samples are deeply investigated by scanning electron microscopy, transmission electron microscopy, X-ray diffraction analyses, Fourier transform infrared spectroscopy, and thermogravimetric analysis. Swelling properties, mechanical performance, and adsorption kinetics models of the hybrid materials are also evaluated. Finally, the adsorption and photocatalytic performance are tested and compared for all of the samples using methylene blue as a dye. Particularly, the adsorption efficiency of ZnO/pHEMA and ZnO/pHEMA-GO nanocomposites, as well as their in situ regeneration via photocatalysis, renders such devices very appealing for advanced wastewater treatment technology.
机译:据报道,基于聚(2-羟乙基甲基丙烯酸酯)(PHEMA)氧化石墨烯(PHEMA)的新杂交纳米复合材料的设计,其中已经沉积ZnO纳米烷基因以诱导光催化性质。在低温下特别选择原子层沉积作为沉积技术,以稳定地将ZnO分子稳定地锚定聚合物OH基团。此外,为了提高Phema Cryogel吸附能力与有机染料,在合成程序期间添加。通过扫描电子显微镜,透射电子显微镜,X射线衍射分析,傅里叶变换红外光谱和热重分析来深化样品的形态学,结晶度和化学成分。还评估了混合材料的溶胀性能,机械性能和吸附动力学模型。最后,测试吸附和光催化性能并将所有使用亚甲基蓝作为染料的样品进行比较。特别地,通过光催化的ZnO / phema和ZnO / phema-go纳米复合材料的吸附效率,以及它们通过光催化的原位再生,使得这种装置非常吸引到先进的废水处理技术。

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