A smart material with switchable surface wettability is highly desired for the practical application in removing oil from oily wastewater. In this work, we developed a robust and simple method to functionalize various substrate materials, such as a melamine sponge and nonwoven textile, with switchable surface oil wettability at varied media with different pHs. The modification method involves oxidative self-polymerization of dopamine on the material surface and subsequently functionalizing with a block copolymer, namely poly(2-vinylpyridine-b-dimethylsiloxane) (P2VP-b-PDMS). The as-functionalized materials display stable and continuous switchable wettability. The materials switch their wettability by simply responding to aqueous pH, and th...
Mussel-inspired polydopamine (PDA) coatings have received widespread concern due to the advantages o...
Designing a stable and uniform hydrophilic material for separation of oil and water is strongly desi...
Polydopamine (PDA) is a bioinspired material with tremendous potential for applications involving su...
A smart material with switchable surface wettability is highly desired for the practical application...
Separation and purification of immiscible organic liquids which are commonly used in various industr...
Superhydrophobic three-dimensional porous materials have been considering as one of the most promisi...
Stimulus-responsive materials have great potential in advanced controllable oil/water separation app...
The introduction of the self-healing function into superhydrophobic surfaces has recently raised inc...
Polydopamine as a multifunctional biomimetic polymer with nonselective strong adhesion properties ha...
Membrane materials with special wettability for separating oil–water mixtures have gradually become ...
Mussel-inspired polydopamine (PDA) deposition provides a prominent approach for constructing functio...
The increasing environmental burden in human society calls for the development of more environmental...
Finding that mussels rely on catechol and amine functional group enriched proteins to achieve robust...
The development of stimuli-responsive materials with the ability of controllable oil/water separatio...
An oil/water separation mesh with high separation efficiency and intrusion pressure of water has bee...
Mussel-inspired polydopamine (PDA) coatings have received widespread concern due to the advantages o...
Designing a stable and uniform hydrophilic material for separation of oil and water is strongly desi...
Polydopamine (PDA) is a bioinspired material with tremendous potential for applications involving su...
A smart material with switchable surface wettability is highly desired for the practical application...
Separation and purification of immiscible organic liquids which are commonly used in various industr...
Superhydrophobic three-dimensional porous materials have been considering as one of the most promisi...
Stimulus-responsive materials have great potential in advanced controllable oil/water separation app...
The introduction of the self-healing function into superhydrophobic surfaces has recently raised inc...
Polydopamine as a multifunctional biomimetic polymer with nonselective strong adhesion properties ha...
Membrane materials with special wettability for separating oil–water mixtures have gradually become ...
Mussel-inspired polydopamine (PDA) deposition provides a prominent approach for constructing functio...
The increasing environmental burden in human society calls for the development of more environmental...
Finding that mussels rely on catechol and amine functional group enriched proteins to achieve robust...
The development of stimuli-responsive materials with the ability of controllable oil/water separatio...
An oil/water separation mesh with high separation efficiency and intrusion pressure of water has bee...
Mussel-inspired polydopamine (PDA) coatings have received widespread concern due to the advantages o...
Designing a stable and uniform hydrophilic material for separation of oil and water is strongly desi...
Polydopamine (PDA) is a bioinspired material with tremendous potential for applications involving su...