首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Hierarchical nanoparticle-induced superhydrophilic and under-water superoleophobic Cu foam with ultrahigh water permeability for effective oil/water separation
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Hierarchical nanoparticle-induced superhydrophilic and under-water superoleophobic Cu foam with ultrahigh water permeability for effective oil/water separation

机译:具有超高水渗透性的分层纳米颗粒诱导的超亲水和水下超疏油铜泡沫,可有效分离油/水

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摘要

In recent years, Cu foam has attracted intensive attention owing to its remarkable performance for oil/water separation. Most research has mainly focused on Cu foam with surfactant decoration, which results in superhydrophobic or even stimuli-responsive membranes. Fabricating Cu foam with intrinsic superhydrophilicity via simple operations still remains a challenge. Herein, we synthesized superhydrophilic and under-water superoleophobic Cu foam that consists of oxy-chloridized hierarchical nanoparticles with metal Cu cores and polar Cu2O/CuO1-x/2Clx shells via the combination of anodization, HCl etching and calcination. This material shows ultrahigh water permeability (5 mu l water-droplet permeating within 9 ms). The oil/water separation efficiency of superhydrophilic Cu foam (SCuF) is above 99% with the oil content in separated water lower than 3 ppm. Moreover, the oil/water separation performance of SCuF for repeated use and anti-corrosion is also excellent. To the best of our knowledge, it is the first attempt to synthesize intrinsic superhydrophilic Cu foam for effective oil/water separation. Due to the greatly enhanced specific surface area and active sites, it has potential applications in catalysis, hydrogen evolution processes, electrode materials and many other environmental protection and energy fields.
机译:近年来,由于泡沫铜在油/水分离方面的卓越性能,引起了广泛的关注。大多数研究主要集中在带有表面活性剂装饰的泡沫铜上,这种泡沫可产生超疏水甚至刺激响应的膜。通过简单的操作来制造具有固有的超亲水性的铜泡沫仍然是一个挑战。在这里,我们通过阳极氧化,HCl蚀刻和煅烧的组合,合成了超亲水性和水下超疏油性Cu泡沫,该泡沫由具有金属Cu核和极性Cu2O / CuO1-x / 2Clx壳的氧氯化分层纳米颗粒组成。该材料显示出超高的水渗透性(9毫秒之内渗透了5微升水滴)。超亲水性Cu泡沫(SCuF)的油/水分离效率高于99%,分离水中的油含量低于3 ppm。此外,SCuF的重复使用和防腐蚀的油/水分离性能也极好。据我们所知,这是首次尝试合成固有的超亲水性Cu泡沫以实现有效的油/水分离。由于大大提高了比表面积和活性位,它在催化,氢释放过程,电极材料以及许多其他环境保护和能源领域中具有潜在的应用。

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