疏水性 MOF-808 粒子包裹三聚氰胺海绵,实现高效油水分离

Shengquan Liu , Peng Li , Yuezhong Zhang , Xinli Gao , Guoyong Wang , Sufang Song , Xudong Zhao
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摘要

开发高效吸附剂是实现油水分离的最可行策略之一。在此,我们采用合成后酸交换方法开发了一种新型疏水性金属有机框架(MOF)。用十五氟辛酸(PFOA)替代 MOF-808 的乙酸,得到氟化 MOF-808-PFOA,其水接触角远大于原生 MOF-808。此外,通过聚二甲基硅氧烷(PDMS)的交联作用,我们成功地将这些亚微米级的 MOF-808-PFOA 颗粒装载到了三聚氰胺(MA)海绵中。所制备的 MOF/PDMS/MA 海绵的接触角高达 151.9°,这是由于网状丝表面粗糙度增加和表面能降低所致。同时,研究还发现这种优异的疏水性在不同的水介质和 pH 值下都能保持良好。结合高疏水性、机械稳定性和多孔结构,该海绵对各类有机油具有优异的吸附性能,饱和吸附容量大(27-65 g-1),平衡时间短(∼3 s),可回收性好。更有趣的是,这种海绵可用作滤芯,即使长期使用也能实现有效的连续油水分离。因此,我们的研究为高效油水分离提供了一种新型海绵吸附剂,并提出了一种通过后合成方法构建疏水 MOFs 的可行策略。
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Hydrophobic MOF-808 particles encapsulated melamine sponge for efficient oil-water separation
Developing highly efficient adsorbents is one of the most feasible strategies to achieve oil-water separation. Herein, we exploited a new hydrophobic metal-organic framework (MOF) by a post-synthesis acid-exchange method. Pentadecafluorooctanoic acid (PFOA) was applied to substitute the acetic acid of MOF-808 to result in the fluorinated MOF-808-PFOA, which owns much larger water contact angle than the primary MOF-808. Further, we successfully loaded these sub-micron MOF-808-PFOA particles into a melamine (MA) sponge, via the crosslinking effect by polydimethylsiloxane (PDMS). The prepared MOF/PDMS/MA sponge shows a high contact angle of 151.9°, induced by the increased surface roughness of mesh filament and decreased surface energy. Meanwhile, it is found that this excellent hydrophobility remains well under different water media and pH values. Combining with the high hydrophobiclity, mechanical stability and porous structure, this sponge shows an excellent adsorption performance for various classes of organic oils, with the large saturated adsorption capacities (27–65 ​g ​g−1), short equilibrium time (∼3 ​s), and good recyclability. More interestingly, this sponge can serve as a filter cartridge to achieve the effective continuous oil-water separation, even under long-term use. Thus, our work provides a new sponge-based adsorbent for efficient oil-water separation, and proposes a feasible strategy to construct hydrophobic MOFs via post-synthesis methods.
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