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Heterogeneous ZIF-L membranes with improved hydrophilicity and anti-bacterial adhesion for potential application in water treatment

机译:具有改善的亲水性和抗菌附着力的非均质ZIF-L膜,可在水处理中潜在应用

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Although different metal–organic framework (MOF) membranes have been widely studied for gas separation, their application for water treatment is still in its infancy. MOF membranes with improved hydrophilicity and stability are particularly essential for water/wastewater treatment. Herein, we have successfully developed heterogeneous membranes (Zn/Co-ZIF-L) composed of vertically standing leaf-like crystals of Zn-ZIF-L grown in situ onto porous ceramic supports, followed by the subsequent heterogeneous growth of Co-ZIF-L. The heterogeneous membranes show improved hydrophilicity (WCA = 13.6 ± 1.6°) and enhanced anti-bacterial adhesion. Significantly, they simultaneously deliver a relative high water flux and much improved anti-bacterial adhesion when compared with the homogeneous membranes (Co-ZIF-L and Zn-ZIF-L). The improvements are attributed to the intrinsic hydrophilic nature of Co-ZIF-L, their epitaxial growth onto Zn-ZIF-L as well as the increased surface roughness. The success of constructing a heterogeneous MOF structure shows an effective strategy to achieve the hydrophilic MOF membranes with considerably enhanced stability for water treatment.
机译:尽管人们已经广泛研究了不同的金属有机框架(MOF)膜用于气体分离,但它们在水处理中的应用仍处于起步阶段。具有改进的亲水性和稳定性的MOF膜对于水/废水处理特别重要。本文中,我们成功开发了异质膜(Zn / Co-ZIF-L),该异质膜由在多孔陶瓷载体上原位生长的Zn-ZIF-L的垂直立叶状晶体组成,随后进行了Co-ZIF-L的异质生长L.异质膜显示出改善的亲水性(WCA = 13.6±1.6°)和增强的抗菌附着力。重要的是,与均质膜(Co-ZIF-L和Zn-ZIF-L)相比,它们同时提供相对较高的水通量和大大提高的抗菌附着力。改善归因于Co-ZIF-L的固有亲水性,它们在Zn-ZIF-L上的外延生长以及增加的表面粗糙度。成功构建异质MOF结构显示出一种有效的策略,可实现亲水性MOF膜,并具有显着增强的水处理稳定性。

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