Understanding how surface physicochemical properties influence the settlement and adhesion of marine fouling organisms is important for the development of effective and environmentally benign marine antifouling coatings. We demonstrate that the thickness of random poly(HEMA-co-PEG(10)DMA) copolymer brushes affect antifouling behavior. Films of thicknesses ranging from 50 to 1000 angstrom were prepared via surface-initiated atom-transfer radical polymerization and characterized using infrared spectroscopy, ellipsometry, atomic force microscopy and contact angle measurements. The fouling resistance of these films was investigated by protein adsorption, attachment of the marine bacterium Cobetia marina, settlement and strength of attachment te...
This work describes the fabrication, characterization, and biological evaluation of a thin protein-r...
This work describes the fabrication, characterization, and biological evaluation of a thin protein-r...
\u3cp\u3eOil-infused 'slippery' polymer surfaces and engineered surface textures have been separatel...
Understanding how surface physicochemical properties influence the settlement and adhesion of marine...
Understanding how surface physicochemical properties influence the settlement and adhesion of marine...
Biofouling is a long-standing issue with tremendous economic and environmental impact. Current scien...
The resistance of charged polymers to biofouling was investigated by subjecting cationic (PDMAEMA), ...
The resistance of charged polymers to biofouling was investigated by subjecting cationic (PDMAEMA), ...
Surfaces of amphiphilic phosphorylcholine polymer (PC1036) prepared by spin-coating were characteriz...
Marine biofouling is defined as the undesirable accumulation of biomacromolecules, microbial slimes,...
A range of amphiphilic polymers with diverse macromolecular architectures has been developed and inc...
Biofouling, the accumulation of biomolecules and organisms to surfaces underwater, is a major proble...
A set of controlled surface composition films was produced utilizing amphiphilic block copolymers di...
Environmentally responsive (or “smart”) polymers represent a new approach for controlling biofouling...
<div><p>The ideal marine antifouling (AF)/fouling-release (FR) coating should be non-toxic, while ef...
This work describes the fabrication, characterization, and biological evaluation of a thin protein-r...
This work describes the fabrication, characterization, and biological evaluation of a thin protein-r...
\u3cp\u3eOil-infused 'slippery' polymer surfaces and engineered surface textures have been separatel...
Understanding how surface physicochemical properties influence the settlement and adhesion of marine...
Understanding how surface physicochemical properties influence the settlement and adhesion of marine...
Biofouling is a long-standing issue with tremendous economic and environmental impact. Current scien...
The resistance of charged polymers to biofouling was investigated by subjecting cationic (PDMAEMA), ...
The resistance of charged polymers to biofouling was investigated by subjecting cationic (PDMAEMA), ...
Surfaces of amphiphilic phosphorylcholine polymer (PC1036) prepared by spin-coating were characteriz...
Marine biofouling is defined as the undesirable accumulation of biomacromolecules, microbial slimes,...
A range of amphiphilic polymers with diverse macromolecular architectures has been developed and inc...
Biofouling, the accumulation of biomolecules and organisms to surfaces underwater, is a major proble...
A set of controlled surface composition films was produced utilizing amphiphilic block copolymers di...
Environmentally responsive (or “smart”) polymers represent a new approach for controlling biofouling...
<div><p>The ideal marine antifouling (AF)/fouling-release (FR) coating should be non-toxic, while ef...
This work describes the fabrication, characterization, and biological evaluation of a thin protein-r...
This work describes the fabrication, characterization, and biological evaluation of a thin protein-r...
\u3cp\u3eOil-infused 'slippery' polymer surfaces and engineered surface textures have been separatel...