基于mof的二维液体弹珠:表面能计算和使用ZIF-9-III@PVDF膜†的高效油水分离

IF 10.7 2区 材料科学 Q1 CHEMISTRY, PHYSICAL
Haneesh Saini, Parashuram Kallem, Eva Otyepková, Florian Geyer, Andreas Schneemann, Vaclav Ranc, Fawzi Banat, Radek Zbořil, Michal Otyepka, Roland A. Fischer and Kolleboyina Jayaramulu
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引用次数: 10

摘要

超疏水mof纳米片组装在液滴的外部形成“液体弹珠”。采用简单的机械化学合成和超声催化制备了基于Co2+分子筛咪唑盐框架的二维超疏水亲油MOF纳米片,即ZIF-9-III ([Co4(bIm)16])。= benzimidazolate)。所制得的ZIF-9-III具有优异的疏水性(水接触角可达144°)和亲油性(油接触角≈0°)。超疏水行为源于其主要的外表面(002),其特征是由暴露的苯并咪唑基团引起的纳米级波纹。这种行为被反气相色谱测量证实,以确定大块剥离的2D ZIF-9-III纳米片和3D ZIF-9-I纳米片的表面能。利用低表面能和良好的水分稳定性等独特的表面性能,采用非溶剂诱导相转化(NIPS)工艺制备了ZIF-9-III@PVDF (PVDF =聚偏氟乙烯)膜。制备的膜可用于油水实时分离,具有较高的吸附能力和抗染色性能。因此,这项工作为开发具有渗透孔隙度的新型超疏水mof基复合材料打开了大门,这可能使其应用于油水分离的自清洁膜。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Two-dimensional MOF-based liquid marbles: surface energy calculations and efficient oil–water separation using a ZIF-9-III@PVDF membrane†

Two-dimensional MOF-based liquid marbles: surface energy calculations and efficient oil–water separation using a ZIF-9-III@PVDF membrane†

Superhydrophobic MOF-nanosheets assembled on the outside of an aqueous droplet form ‘liquid marbles’. A facile mechanochemical-based synthesis followed by ultrasonication was used to prepare two-dimensional superhydrophobic–oleophilic MOF nanosheets of a Co2+-based zeolitic imidazolate framework, namely ZIF-9-III ([Co4(bIm)16] with bIm? = benzimidazolate). The resulting ZIF-9-III showed excellent hydrophobicity (advancing water contact angle of 144°) and oleophilicity (oil contact angle of ≈0°). The superhydrophobic behavior originated from its predominant outer (002) surface, which featured nanoscale corrugation caused by the exposed benzimidazole groups. This behavior was corroborated by inverse gas chromatography measurements to determine the surface energies of bulk exfoliated 2D ZIF-9-III nanosheets and 3D ZIF-9-I. Taking advantage of the unique surface properties, including low surface energy and good moisture stability, we prepared ZIF-9-III@PVDF (PVDF = polyvinylidene fluoride) membranes following the non-solvent induced phase inversion (NIPS) process. The resulting membranes were exploited in real-time oil/water separation and featured remarkably high adsorption capacity and anti-staining properties. Therefore, this work opens the door to developing new superhydrophobic MOF-based composite materials with permeant porosity, which may enable applications in self-cleaning membranes for oil–water separation.

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来源期刊
Journal of Materials Chemistry A
Journal of Materials Chemistry A CHEMISTRY, PHYSICAL-ENERGY & FUELS
CiteScore
19.50
自引率
5.00%
发文量
1892
审稿时长
1.5 months
期刊介绍: The Journal of Materials Chemistry A, B & C covers a wide range of high-quality studies in the field of materials chemistry, with each section focusing on specific applications of the materials studied. Journal of Materials Chemistry A emphasizes applications in energy and sustainability, including topics such as artificial photosynthesis, batteries, and fuel cells. Journal of Materials Chemistry B focuses on applications in biology and medicine, while Journal of Materials Chemistry C covers applications in optical, magnetic, and electronic devices. Example topic areas within the scope of Journal of Materials Chemistry A include catalysis, green/sustainable materials, sensors, and water treatment, among others.
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