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Self-cleaning MOF: realization of extreme water repellence in coordination driven self-assembled nanostructures

机译:自清洁MOF:在配位驱动的自组装纳米结构中实现极高的疏水性

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摘要

Bio-inspired self-cleaning surfaces have found industrial applications in oil-water separation, stain resistant textiles, anti-biofouling paints in ships etc. Interestingly, self-cleaning metal-organic framework (MOF) materials having high water contact angles and corrosion resistance have not been realized so far. To address this issue, we have used the fundamentals of self-assembly to expose hydrophobic alkyl chains on a MOF surface. This decreases the surface free energy and hence increases hydrophobicity. Coordination directed self-assembly of dialkoxyoctadecyl-oligo-(p-phenyleneethynylene) dicarboxylate (OPE-C-18) with Zn-II in a DMF/H2O mixture leads to a three dimensional supramolecular porous framework {Zn(OPE-C-18)center dot 2H(2)O} (NMOF-1) with nanobelt morphology. Inherently superhydrophobic and self-cleaning NMOF-1 has high thermal and chemical stability. The periodic arrangement of 1D Zn-OPE-C-18 chains with octadecyl alkyl chains projecting outward reduces the surface free energy leading to superhydrophobicity in NMOF-1 (contact angle: 160-162 degrees). The hierarchical surface structure thus generated, enables NMOF-1 to mimic the lotus leaf in its self-cleaning property with an unprecedented tilt angle of 2 degrees. Additionally, superhydrophobicity remains intact over a wide pH range (1-9) and under high ionic concentrations. We believe that such a development in this field will herald a new class of materials capable of water repellent applications.
机译:具有生物启发性的自清洁表面已在油水分离,防污纺织品,船上防污涂料等方面获得了工业应用。有趣的是,具有高水接触角和耐腐蚀性的自清洁金属有机骨架(MOF)材料到目前为止尚未实现。为了解决这个问题,我们使用了自组装的基本原理来暴露MOF表面上的疏水烷基链。这降低了表面自由能,因此增加了疏水性。在DMF / H2O混合物中二烷氧基十八烷基-低聚-(对亚苯基亚乙炔基)二羧酸(OPE-C-18)与Zn-II的配位定向自组装产生三维超分子多孔骨架{Zn(OPE-C-18)具有纳米带形态的中心点2H(2)O}(NMOF-1)。固有的超疏水和自清洁NMOF-1具有很高的热稳定性和化学稳定性。一维Zn-OPE-C-18链与十八烷基烷基链向外突出的周期性排列减少了表面自由能,导致NMOF-1中的超疏水性(接触角:160-162度)。这样生成的分层表面结构使NMOF-1能够以前所未有的2度倾斜角模仿荷叶的自清洁特性。此外,超疏水性在很宽的pH范围(1-9)和高离子浓度下仍保持完整。我们相信,这一领域的发展将预示着能够防水应用的新型材料。

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