Metal-organic frameworks (MOFs) are normally moisture-sensitive and unstable in aqueous environments, which has considerably limited their practical applications because water/moisture is ubiquitous in many industrial processes. New materials with superior water stability are, therefore, in great demand and vital to their practical applications. Here, a novel oil/water interfacial assembly strategy is demonstrated for the synthesis of a new class of metal-organic monoacid framework (MOmAF) with exceptional water stability and chemical stability. Superhydrophobic 2D sheets are synthesized at room temperature, while 1D nanotubes are obtained via the self-scrolling of their 2D sheets for the first time. In addition, a simple sequential drop-casting method is developed to coat as-synthesized MOmAF structures onto porous membranes. This can potentially open up new avenues in the design of superhydrophobic self-cleaning MOmAF materials without tedious post-synthetic modifications and usher in a new class of materials meeting industrial needs.

Chen, T., Wei, X., Fabiani, T., Liu, B., Yang, Y., Lewis, A., et al. (2024). New 2D Metal‐Organic Monoacid Framework (MOmAF): Realization of Extreme Water Repellence. SMALL, 20(50), 1-9 [10.1002/smll.202404224].

New 2D Metal‐Organic Monoacid Framework (MOmAF): Realization of Extreme Water Repellence

De Angelis, Maria Grazia;
2024

Abstract

Metal-organic frameworks (MOFs) are normally moisture-sensitive and unstable in aqueous environments, which has considerably limited their practical applications because water/moisture is ubiquitous in many industrial processes. New materials with superior water stability are, therefore, in great demand and vital to their practical applications. Here, a novel oil/water interfacial assembly strategy is demonstrated for the synthesis of a new class of metal-organic monoacid framework (MOmAF) with exceptional water stability and chemical stability. Superhydrophobic 2D sheets are synthesized at room temperature, while 1D nanotubes are obtained via the self-scrolling of their 2D sheets for the first time. In addition, a simple sequential drop-casting method is developed to coat as-synthesized MOmAF structures onto porous membranes. This can potentially open up new avenues in the design of superhydrophobic self-cleaning MOmAF materials without tedious post-synthetic modifications and usher in a new class of materials meeting industrial needs.
2024
Chen, T., Wei, X., Fabiani, T., Liu, B., Yang, Y., Lewis, A., et al. (2024). New 2D Metal‐Organic Monoacid Framework (MOmAF): Realization of Extreme Water Repellence. SMALL, 20(50), 1-9 [10.1002/smll.202404224].
Chen, Ting; Wei, Xiuming; Fabiani, Thomas; Liu, Baoyu; Yang, Yaohao; Lewis, Allana; Mazlan, Nurul A.; Butt, Fraz Saeed; Chen, Siyu; Gu, Qinfeng; Radac...espandi
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11585/1038320
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