Membrane materials with special wettability for separating oil–water mixtures have gradually become one of the research hotspots. However, oily wastewater usually has very strong corrosiveness, which puts forward high requirements for the chemical stability of the separation membrane. In addition, oil droplets may block the pores, resulting in the decrease of separation efficiency or even separation failure. Herein, biomimetic TiO2–titanium meshes (BTTMs) with switchable wettability were successfully fabricated by one-step dip coating of poly(vinylidene difluoride) and modified TiO2 suspension on the titanium meshes. The simple and efficient preparation method will facilitate the promotion of this smart material. Due to the controlled wett...
Various pollutants in wastewater including water-insoluble oils and water-soluble toxic organic poll...
Stability of long-term anti-biofouling and superhydrophobicity features is doubtful because of wetti...
In this study, we prepared biocompatible superhydrophilic and underwater superoleophobic tannic acid...
Surfaces which possess extraordinary water attraction or repellency depend on surface energy, surfac...
Superhydrophobic materials have recently attracted great interest from both academia and industry du...
Abstract Understanding the importance of reclaiming water from a huge oily wastewater stream generat...
The high performance of an oil–water separator relies largely on unique design of the architecture w...
Membrane filtration is an effective technique for separating micro- and nano-sized oil droplets from...
Oil-water separation is critically important for the water treatment of oily wastewater or oil-spill...
Experiment evaluation and mechanism analysis of separation performance are crucial for oily wastewat...
As one of the most common forms of waste, waste PET is a serious pollutant in natural and human livi...
Global growing challenges of water pollution due to oil spills bring a desperate need of efficient s...
A smart material with switchable surface wettability is highly desired for the practical application...
With the blooming of oil and gas industries, oily saline wastewater treatment becomes a viable optio...
The rapid industrial growth has led to the large production of oily wastewater. Treatment of oily wa...
Various pollutants in wastewater including water-insoluble oils and water-soluble toxic organic poll...
Stability of long-term anti-biofouling and superhydrophobicity features is doubtful because of wetti...
In this study, we prepared biocompatible superhydrophilic and underwater superoleophobic tannic acid...
Surfaces which possess extraordinary water attraction or repellency depend on surface energy, surfac...
Superhydrophobic materials have recently attracted great interest from both academia and industry du...
Abstract Understanding the importance of reclaiming water from a huge oily wastewater stream generat...
The high performance of an oil–water separator relies largely on unique design of the architecture w...
Membrane filtration is an effective technique for separating micro- and nano-sized oil droplets from...
Oil-water separation is critically important for the water treatment of oily wastewater or oil-spill...
Experiment evaluation and mechanism analysis of separation performance are crucial for oily wastewat...
As one of the most common forms of waste, waste PET is a serious pollutant in natural and human livi...
Global growing challenges of water pollution due to oil spills bring a desperate need of efficient s...
A smart material with switchable surface wettability is highly desired for the practical application...
With the blooming of oil and gas industries, oily saline wastewater treatment becomes a viable optio...
The rapid industrial growth has led to the large production of oily wastewater. Treatment of oily wa...
Various pollutants in wastewater including water-insoluble oils and water-soluble toxic organic poll...
Stability of long-term anti-biofouling and superhydrophobicity features is doubtful because of wetti...
In this study, we prepared biocompatible superhydrophilic and underwater superoleophobic tannic acid...