PofoliaShared via Pofolia

ACS Omega· 2026Q1

Collagen Fibers-Derived Superhydrophobic Foams for High-Performance Separation of Stable Emulsions

Yangjian Zhan, Ziying Hu, Bo Ning, Yujia Wang et al.

Short summary

A novel collagen fibers (CFs)-derived superhydrophobic foam, achieved via polyurethane foaming and PDMS coating, demonstrates >99.99% separation efficiency for stable water-in-oil emulsions.

AI-generated from the title and abstract; the full text is not read.

Abstract

Abstract Superwetting separation has emerged as a promising alternative to address the environmental problems associated with emulsion wastewater. However, a major challenge for superwetting separation materials is the formation of a rejected phase that inevitably leads to fouling and separation failure. Herein, a novel collagen fibers (CFs)-derived superhydrophobic foam was developed by a facile polyurethane foaming approach followed by poly(dimethylsiloxane) (PDMS) coating. The as-prepared superhydrophobic CFs foam exhibited a high porosity of 80.21%, a static water contact angle as high as 152.2°, and outstanding oleophilicity with fast oil infiltration (0.03 s). The as-prepared superhydrophobic CFs foam was further applied to the high-performance separation of surfactant-stabilized water-in-oil (W/O) emulsions, including surfactant-stabilized W/O emulsions and mixed surfactant-stabilized W/O emulsions, with a separation efficiency exceeding 99.99% and a separation flux as high as 113.04 L m–2 h–1. The high porosity of the superhydrophobic CFs foam ensures the storage of the water phase, thus exhibiting excellent anti-fouling performance and recyclability. This work provides a sustainable strategy for developing biomass-based superwetting foams for efficient emulsion separation.

The authors' abstract, as published at the source. ACS Omega, 2026 · DOI ↗

TakeawaysIn the app
Key pointsIn the app
Ask the paperIn the app

The rest is in the Pofolia app

Takeaways, key points and questions to the paper; new summaries every day for your field. Free.

Sign in on the web to open

Surfaces, Coatings and FilmsMaterials Science