Hydrophobic PTFE/rGO Aerogels with High Polymer Content as Water Sorbents
Гидрофобные аэрогели PTFE/rGO с высоким содержанием полимера в качестве сорбентов воды
2026-08-01
SCID: 54.1/3wes8fbm
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PTFE/rGO aerogelsfreeze-dryinghydrophobic aerogelsorganic solvent absorptionwater sorption capacity
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Abstract (AI)
Composite aerogels based on polytetrafluoroethylene (PTFE) and graphene oxide (GO) with a high polymer content of 90, 95 and 98 wt.% were synthesized for the first time. It was found that GO performs a structure-forming function, allowing the production of monolithic three-dimensional frameworks stable under freeze-drying conditions even at a minimal concentration of 2 wt.%, whereas pure PTFE is destroyed under these conditions. Subsequent annealing of the composites at 370 °C, which is higher than the decomposition temperature of oxygen-containing groups of GO and the melting point of PTFE, leads to the formation of PTFE/reduced graphene oxide (rGO) aerogels. A direct dependence of shrinkage during annealing on the polymer content was observed: it sharply increases from 2.1% to 26.6% with an increasing proportion of PTFE. This effect is explained by the dominant role of capillary forces pulling together the rGO sheets in the molten polymer, while the rGO frame resists the shrinkage. The most significant result is the achievement of a record low water sorption capacity (Qw) for an aerogel with 98% PTFE, amounting to only 0.001 g/g. This value is several orders of magnitude lower than that of pure rGO aerogel (~20 g/g), confirming that a high content of hydrophobic polymer combined with thermal treatment effectively shields the hydrophilic sites on the surface of the rGO sheets. The composites obtained in this work exhibit high hydrophobicity (contact angles up to 144°) and unique potential for the selective absorption of organic solvents from water.
Key Findings
1
A 98 wt.% PTFE aerogel achieved a record-low water sorption capacity of 0.001 g/g, compared with approximately 20 g/g for pure rGO aerogel.
2
Annealing at 370 °C converts GO to rGO and produces PTFE/rGO aerogels; shrinkage increases from 2.1% to 26.6% as PTFE content rises.
3
GO acts as a structure-forming additive, enabling monolithic three-dimensional frameworks with only 2 wt.% GO, unlike pure PTFE.
4
PTFE/GO composite aerogels containing 90–98 wt.% polymer were synthesized for the first time.
5
The composites exhibit contact angles up to 144° and potential for selectively absorbing organic solvents from water.
Research Object
PTFE/rGO composite aerogels with high polymer content for water and organic-solvent sorption
Research Subject
The effects of PTFE content and thermal reduction on aerogel structure, shrinkage, hydrophobicity, water sorption capacity, and selective organic-solvent absorption
Publication Details
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2026-08-01
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