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首页> 外文期刊>ACS applied materials & interfaces >Strong Interplay between Polymer Surface Charge and MOF Cage Chemistry in Mixed-Matrix Membrane for Water Treatment Applications
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Strong Interplay between Polymer Surface Charge and MOF Cage Chemistry in Mixed-Matrix Membrane for Water Treatment Applications

机译:用于水处理应用的混合基质膜中聚合物表面电荷和MOF笼化学之间的强相互作用

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Despite the large number of reports on the utilization of highly microporous solids, most relevant are metal-organic frameworks (MOFs), in different demanding applications, the successful hybridization of MOFs and moldable polymer matrices into flexible, water-permeable membranes exhibiting strong entanglement of the MOF and the polymer matrix properties is still lacking. We describe herein an efficient pathway to construct a mixed-matrix membrane (MMM) comprising a water-stable metal-organic framework (UiO-66-NH2), as the active sorbent, and cellulose acetate (CA), as the polymer matrix, to construct a flexible membrane for water treatment applications. The MOF@CA MMM demonstrated superior performance in terms of exceptional removal of organic dyes (both cationic and anionic species) as well as hexavalent Cr ions, compared to the control CA membrane. The recorded high uptake of the MOF@CA MMM for this wide array of contaminants demonstrated the accessibility of the MOF nanocages immobilized within the MMM, in contrast to the common perception that the polymer matrix might act as a physical barrier to block the accessibility of the MOF cages. The negative surface charge of the matrix exerted a notable action to affect the diffusion of the negatively charged contaminants to reach the active sorbent filler. Moreover, the formed membrane demonstrated high durability and recyclability with no detected loss of performance over numerous cycles. This approach outlines the ability to formulate one of the most water-stable MOFs, as exceptional microporous sorbent, into a usable membrane form compatible with real-life applications.
机译:尽管关于利用高度微孔固体的报告数量,但最相关的是金属有机框架(MOF),在不同苛刻的应用中,将MOF和可模塑聚合物基质的成功杂交成柔性,透水膜,呈现强大的缠结仍然缺乏MOF和聚合物基质特性。我们在本文中描述了构建包含水稳定金属 - 有机骨架(UIO-66-NH2)的混合基质膜(MMM)的有效途径,作为活性吸附剂和乙酸纤维素(CA),作为聚合物基质,构建用于水处理应用的柔性膜。与对照CA膜相比,MOF @ CA MMM在卓越的去除有机染料(阳离子和阴离子物质)以及六价铬的CR离子方面表现出优异的性能。对于这种宽阵污染物的MOF @ CA MMM的记录的高吸收证明了固定在MMM内的MOF纳米的可达性,与聚合物基质可能充当物理屏障来阻挡可达性的常见感知相反MOF笼子。基质的负面电荷施加着显着的作用,以影响带负电荷的污染物的扩散到达活性吸附剂填料。此外,所形成的膜表现出高耐久性和可回收性,没有检测到对许多循环的性能损失。该方法概述了将最具水稳定的MOF之一的能力,如出色的微孔吸附剂,进入与现实寿命应用相容的可用膜形式。

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