材料科学
超亲水性
润湿
光催化
化学工程
光降解
渗透
异质结
热稳定性
接触角
复合材料
膜
催化作用
光电子学
化学
有机化学
生物化学
工程类
作者
Qi Zhou,Na Yang,Luhong Zhang,Longfei Zhang,Jingshuai Li,Xiaodong Yang,Feifei Peng,Yongli Sun
标识
DOI:10.1016/j.jallcom.2021.162763
摘要
Application of the super-wettability material is one of the most ideal approaches to achieve oil/water separation. The construction of the super-wettability material surface is the key to significantly boost the separation efficiency. In this work, the [email protected]2O honeycomb-likes hierarchical micro/nano-structure copper mesh ([email protected]2O/CM) is facilely fabricated through the combination of oxidation and hydrothermal deposition. Accordingly, superhydrophilicity/underwater superoleophobicity can be achieved, which endows over 99% separation efficiency as well as considerable permeation flux (>38120 L∙m−2∙h−1) for [email protected]2O/CM toward various oil/water mixtures. Besides, the combination of ZnO and Cu2O produces a p-n heterostructure to further reduce the recombination rate of electron and hole, resulting in the improved the photocatalytic activity. The removal efficiency for methylene blue (MB) of [email protected]2O/CM could be improved to 98.1%, nearly 1.6 times than that of Cu2O/CM. Various stability tests demonstrate that the material exhibits good mechanical stability, anti-corrosive property and thermal durability under harsh environments. Furthermore, cyclic experiments reveal that [email protected]2O/CM exhibits fascinating reusability. In conclusion, the as-synthesized dual-functional mesh performs favorable photocatalytic activity and super-wettability, which can realize wastewater remediation at low cost and energy consumption.
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