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首页> 外文期刊>Separation and Purification Technology >Fabrication of superhydrophobic/superoleophilic functionalized reduced graphene oxide/polydopamine/PFDT membrane for efficient oil/water separation
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Fabrication of superhydrophobic/superoleophilic functionalized reduced graphene oxide/polydopamine/PFDT membrane for efficient oil/water separation

机译:超疏水/超级官能化的制备用于高效油/水分离的超疏水/超级官能化的石墨烯氧化物/聚二胺/ PFDT膜

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摘要

A superhydrophobic/superoleophilic (SS) reduced graphene oxide-polydopamine functionalized with 1H,1H,2H,2H-perfluorodecanethiol (rGO-PDA-PFDT) membrane was successfully fabricated by a facile and simple two-step method. The surface morphology and chemical composition were thoroughly investigated by scanning electron microscopy (SEM), energy dispersive X-ray (EDX) analysis, UV-vis spectrophotometry, Fourier transform infrared (FT-IR) spectroscopy, Raman spectroscopy, X-ray diffraction (XRD) pattern and X-ray photoelectron spectroscopy (XPS). The wetting properties were assessed using water contact angle (WCA) measurements. The as-prepared rGO-PDA-PFDT membrane displayed a WCA of about 156, and the water droplet can leave the surface without hysteresis, indicating a stable Cassie-Baxter state. Using the Cassie-Baxter model, we found that approximately 7% serves as the contact area of the water droplet and the solid surface, and the remaining 93% represents the contact area of the water droplet and air. Organic solvents such as chloroform, hexane, toluene, acetone, and 1-octane wet completely the surface, indicating superoleophilicity. The superhydrophobic/superoleophilic (SS) membrane was highly stable even in harsh environments such as acid and alkaline media. The rGO-PDA-PFDT was filtered on Whatman filter paper to obtain a membrane and was subsequently applied for oil/water separation. The rGO-PDA-PFDT membrane was able to separate chloroform from water owing to its superhydrophobicity and superoleophilicity. Additionally, the membrane can be reused for 10 repetitive separation cycles without any apparent loss of its performance. These properties are expected to promote the application of the rGO-PDA-PFDT membrane in various environmental processes.
机译:通过容易和简单的两步法成功制造了用1H,1H,2H,2H-全氟二烷硫醇(RGO-PDA-PFDT)膜的超疏水/超级氧化物 - 聚二氨基胺。通过扫描电子显微镜(SEM),能量分散X射线(EDX)分析,UV-Vis分光光度法,傅立叶变换红外(FT-IR)光谱,拉曼光谱,X射线衍射( XRD)图案和X射线光电子能谱(XPS)。使用水接触角(WCA)测量评估润湿性能。制备的RGO-PDA-PFDT膜显示为约156的WCA,水滴可以在没有滞后的情况下离开表面,表明稳定的Cassie-Baxter状态。使用Cassie-Baxter模型,我们发现大约7%用作水滴和固体表面的接触面积,其余93%表示水滴和空气的接触面积。有机溶剂如氯仿,己烷,甲苯,丙酮和1-辛烷完全湿润,表明脂质化。即使在诸如酸和碱性介质的恶劣环境中,超疏水/超级体(SS)膜也非常稳定。将RGO-PDA-PFDT过滤在Whatman滤纸上以获得膜,随后施用于油/水分离。 rgo-pda-pfdt膜能够通过其超疏水性和超级嗜热性将氯仿与水分离。另外,膜可以重复使用10个重复的分离循环,而无需任何明显的性能损失。预计这些性质将促进RGO-PDA-PFDT膜在各种环境过程中的应用。

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