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首页> 外文期刊>Separation and Purification Technology >Bioinspired dopamine modulating graphene oxide nanocomposite membrane interposed by super-hydrophilic UiO-66 with enhanced water permeability
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Bioinspired dopamine modulating graphene oxide nanocomposite membrane interposed by super-hydrophilic UiO-66 with enhanced water permeability

机译:Bioinspired多巴胺调节石墨烯氧化物纳米复合材料,其具有增强的水渗透性的超亲水UIO-66插入

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摘要

A composite material constructed by intercalating super-hydrophilic UiO-66 into the graphene oxide (GO) nanosheets was synthesized under the modification of polydopamine (PDA), and the PDA/RGO/UiO-66 hybrid membranes with enhanced water permeability, favorable dye separation performance and anti-fouling property were prepared on the cellulose acetate (CA) substrate by vacuum-assisted filtration method. In this work, UiO-66 nanoparticles (NPs) were introduced into the GO interlayers to inhibit their accumulation, while PDA was used to partially reduce GO and ensure the stability of the composite material. The prepared powder samples and composite membranes were subjected to PXRD, FT-IR, SEM, AFM, XPS, WCA characterizations and zeta potential tests, respectively. The results indicated that PDA/RGO/UiO-66 complex films presented more hydrophilicity with a pure water flux as high as 167.14 L/(m(2).h), which increased by 256.91% compared to the PDA/ RGO membrane and maintained a high dye separation performance (99.54% for MB and 87.36% for CR). Also, the improvement in surface hydrophilicity of the membrane was advantageous for heightening its fouling resistance. In general, the PDA/RGO/UiO-66 composite membranes synthesized in this paper have great potential for efficient separation and purification of dye wastewater.
机译:通过将超亲水UIO-66嵌入石墨烯(GO)纳米片中构成的复合材料在聚二胺(PDA)的改性下合成,并且PDA / RGO / UIO-66杂化膜具有增强的水渗透性,有利的染料分离通过真空辅助过滤法在醋酸纤维素(CA)底物上制备性能和防污性。在这项工作中,将UIO-66纳米颗粒(NPS)引入去夹层中以抑制它们的积累,而PDA用于部分减少去除并确保复合材料的稳定性。将制备的粉末样品和复合膜分别进行PXRD,FT-IR,SEM,AFM,XPS,WCA表征和Zeta电位测试。结果表明,PDA / RGO / UIO-66复合膜具有更高的亲水性,其纯净的水通量高达167.14升/(m(2).h),与PDA / rgo膜相比,增加了256.91%并保持高染料分离性能(Mb的99.54%,Cr的87.36%)。而且,膜的表面亲水性的改善是有利于加强其污垢抗性的。通常,本文合成的PDA / Rgo / UIO-66复合膜具有巨大的有效分离和纯化染料废水的潜力。

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