A UiO-66-coated mesh membrane with micro- and nanostructures was designed and successfully fabricated on steel mesh through a simple solution immersion process, exhibiting hydrophilic and underwater superoleophobic properties. It displays an outstanding oil–water separation efficiency over 99.99% with a high water permeation flux of 12.7 × 10<sup>4</sup> L m<sup>–2</sup> h<sup>–1</sup>, so high purity water (with the residual oil content less than 4 ppm) can be readily obtained from such a simple mesh membrane from various oil–water mixtures. Its large-scale membrane production will facilitate its practical usage for the industrial and environmental water purification
Oil spills and an increasing demand for the treatment of industrial oily wastewater are driving the ...
Membranes inspired by special wetting properties of aquatic plant leaves enable selective removal of...
Under seawater superoleophobic polyvinylidene fluoride (PVDF) membrane inspired by mussel is success...
A UiO-66-coated mesh membrane with micro- and nanostructures was designed and successfully fabricate...
A UiO-66-coated mesh membrane with micro- and nanostructures was designed and successfully fabricate...
A UiO-66-coated mesh membrane with micro- and nanostructures was designed and successfully fabricate...
Oil–water separation is of great importance for the treatment of oily wastewater, including immiscib...
Oil–water separation is of great importance for the treatment of oily wastewater, including immiscib...
A superhydrophilic and underwater superoleophobic PVDF membrane (PVDFAH) has been prepared by surfac...
Oily wastewater is always a threat to biological and human safety, and it is a worldwide challenge t...
Traditional polymer membranes prepared by phase inversion process have the problems of low flux and ...
Designing a stable and uniform hydrophilic material for separation of oil and water is strongly desi...
To address the worldwide oil and water separation issue, a novel approach was inspired by natural ph...
Abstract The separation of oil/water mixtures, polymer/water mixtures, or bubble/water mixtures has ...
To improve the separation efficiency and decrease fouling of the membranes used in oil-in-water emul...
Oil spills and an increasing demand for the treatment of industrial oily wastewater are driving the ...
Membranes inspired by special wetting properties of aquatic plant leaves enable selective removal of...
Under seawater superoleophobic polyvinylidene fluoride (PVDF) membrane inspired by mussel is success...
A UiO-66-coated mesh membrane with micro- and nanostructures was designed and successfully fabricate...
A UiO-66-coated mesh membrane with micro- and nanostructures was designed and successfully fabricate...
A UiO-66-coated mesh membrane with micro- and nanostructures was designed and successfully fabricate...
Oil–water separation is of great importance for the treatment of oily wastewater, including immiscib...
Oil–water separation is of great importance for the treatment of oily wastewater, including immiscib...
A superhydrophilic and underwater superoleophobic PVDF membrane (PVDFAH) has been prepared by surfac...
Oily wastewater is always a threat to biological and human safety, and it is a worldwide challenge t...
Traditional polymer membranes prepared by phase inversion process have the problems of low flux and ...
Designing a stable and uniform hydrophilic material for separation of oil and water is strongly desi...
To address the worldwide oil and water separation issue, a novel approach was inspired by natural ph...
Abstract The separation of oil/water mixtures, polymer/water mixtures, or bubble/water mixtures has ...
To improve the separation efficiency and decrease fouling of the membranes used in oil-in-water emul...
Oil spills and an increasing demand for the treatment of industrial oily wastewater are driving the ...
Membranes inspired by special wetting properties of aquatic plant leaves enable selective removal of...
Under seawater superoleophobic polyvinylidene fluoride (PVDF) membrane inspired by mussel is success...