A composite film composed of porous polyurethane (PU) and polystyrene (PS) microspheres with both superhydrophobicity and superoleophilicity has been prepared. In this film, the dual-scale structure enhances both the hydrophobicity and oleophilicity of the surface material. The composite film with such an 'intelligent' wettability property can be utilized to separate oil and water systems efficiently
Various nanoparticles (silicon oxide, tin oxide and aluminium oxide) were mixed with poly (methyl si...
Superhydrophobic materials have been widely applied in rapid removal and collection of oils from oil...
In current work, SiO2 nanoparticles embedded linear low density polyethylene (LLDPE) superhydrophobi...
With the purpose of purging and recycling oil and organic solvent from a water surface, a superhydro...
A free-standing, flexible, transparent, and fluorescent superhydrophobic composite film is fabricate...
With the rapid increase of oil production and offshore transportation, the probability of accidental...
Herein, we report for the first time on the fabrication of a robust, thermoresponsive polymer membra...
Herein, we report for the first time on the fabrication of a robust, thermoresponsive polymer membra...
Oil spill in the environment is one of the serious issues faced around the world. Efficient oil remo...
In this study, a method that can simultaneously separate oil/water mixtures and water-in-oil emulsio...
A responsive polymer composite film was generated by the use of reversibly switchable Surface morpho...
Recently, materials with controlled oil/water separation ability became a new research focus. Herein...
Photoreactive composite thin layers with tunable wetting properties from superhydrophilic to superhy...
Functional membranes with a superwetting surface property have been extensively explored to achieve ...
The present work describes a one-step facile spray deposition process for the fabrication of superhy...
Various nanoparticles (silicon oxide, tin oxide and aluminium oxide) were mixed with poly (methyl si...
Superhydrophobic materials have been widely applied in rapid removal and collection of oils from oil...
In current work, SiO2 nanoparticles embedded linear low density polyethylene (LLDPE) superhydrophobi...
With the purpose of purging and recycling oil and organic solvent from a water surface, a superhydro...
A free-standing, flexible, transparent, and fluorescent superhydrophobic composite film is fabricate...
With the rapid increase of oil production and offshore transportation, the probability of accidental...
Herein, we report for the first time on the fabrication of a robust, thermoresponsive polymer membra...
Herein, we report for the first time on the fabrication of a robust, thermoresponsive polymer membra...
Oil spill in the environment is one of the serious issues faced around the world. Efficient oil remo...
In this study, a method that can simultaneously separate oil/water mixtures and water-in-oil emulsio...
A responsive polymer composite film was generated by the use of reversibly switchable Surface morpho...
Recently, materials with controlled oil/water separation ability became a new research focus. Herein...
Photoreactive composite thin layers with tunable wetting properties from superhydrophilic to superhy...
Functional membranes with a superwetting surface property have been extensively explored to achieve ...
The present work describes a one-step facile spray deposition process for the fabrication of superhy...
Various nanoparticles (silicon oxide, tin oxide and aluminium oxide) were mixed with poly (methyl si...
Superhydrophobic materials have been widely applied in rapid removal and collection of oils from oil...
In current work, SiO2 nanoparticles embedded linear low density polyethylene (LLDPE) superhydrophobi...