Abstract
Porous materials with super-wetting surfaces (superhydrophilic/underwater superoleophobic) are ideal for oil/water separation. However, the inability to monitor the pollution degree and self-cleaning during the separation process limits their application in industrial production. In this study, a porous metal-based hydrogel is proposed, inspired by the porous structure of wood. Porous copper foam with nano-Cu(OH)2is used as the skeleton, and its surface is coated with a polyvinyl alcohol, tannic acid, and multiwalled carbon nanotube cross-linked hydrogel coating. The hydrogel has superhydrophilicity and excellent oil/water separation efficiency (>99%) and can adapt to various environments. This approach can also realize hydrogel pollution degree self-detection according to the change in the electrical signal generated during the oil/water separation process, and the hydrogel can also be recovered by soaking to realize self-cleaning. This study will provide new insights into the application of oil/water separation materials in practical industrial manufacturing.
| Original language | English |
|---|---|
| Pages (from-to) | 26057-26067 |
| Number of pages | 11 |
| Journal | ACS Applied Materials and Interfaces |
| Volume | 14 |
| Issue number | 22 |
| DOIs | |
| State | Published - 8 Jun 2022 |
Keywords
- hydrogel coating
- oil/water separation
- self-cleaning
- self-detection
- super-wetting surface
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