International audienceWe have developed a new and easy surface functionalization technology for monitoring wettability in heterogeneous nano- and microfluidic devices. This technology is based on mussel inspired, dopamine chemistry and it permits to end-graft hydrophilic polymer brushes onto virtually any surface in a low-viscosity regime. We have successfully modified a variety of different solid surfaces, such as Si, SiO2, Ag, Cu, SU8 and PDMS. The modified surfaces were characterized by water contact angle measurements, atomic force microscopy, cyclic voltammetry and by electrokinetic measurements. The adsorption of proteins on the unmodified and modified surfaces was probed with fluorescently labeled albumin. We clearly demonstrated tha...
In this study, a surface with patterned wettability by means of surface structuring, rather than thr...
The Author(s) 2009. This article is published with open access at Springerlink.com Abstract Fast adv...
ii Performance of biomedical devices to a large extent depends on the interactions between the devic...
International audienceWe have developed a new and easy surface functionalization technology for moni...
International audienceWe have developed a new and easy surface functionalization technology for moni...
International audienceWe have developed a new and easy surface functionalization technology for moni...
International audienceWe have developed a new and easy surface functionalization technology for moni...
International audienceWe have developed a new and easy surface functionalization technology for moni...
We report a versatile approach for the design of substrate-independent low-fouling surfaces via muss...
For the development of smart surfaces high attention is focused on stimuli-responsive polymers. Sinc...
For the development of smart surfaces high attention is focused on stimuli-responsive polymers. Sinc...
Fast advancements of microfabrication processes in past two decades have reached to a fairly matured...
A novel anti-biofouling mechanism based on the combined effects of electric field and shear stress w...
A novel anti-biofouling mechanism based on the combined effects of electric field and shear stress w...
We report a novel nonfouling passivation method using poly(ethylene glycol) (PEG) engraftment on th...
In this study, a surface with patterned wettability by means of surface structuring, rather than thr...
The Author(s) 2009. This article is published with open access at Springerlink.com Abstract Fast adv...
ii Performance of biomedical devices to a large extent depends on the interactions between the devic...
International audienceWe have developed a new and easy surface functionalization technology for moni...
International audienceWe have developed a new and easy surface functionalization technology for moni...
International audienceWe have developed a new and easy surface functionalization technology for moni...
International audienceWe have developed a new and easy surface functionalization technology for moni...
International audienceWe have developed a new and easy surface functionalization technology for moni...
We report a versatile approach for the design of substrate-independent low-fouling surfaces via muss...
For the development of smart surfaces high attention is focused on stimuli-responsive polymers. Sinc...
For the development of smart surfaces high attention is focused on stimuli-responsive polymers. Sinc...
Fast advancements of microfabrication processes in past two decades have reached to a fairly matured...
A novel anti-biofouling mechanism based on the combined effects of electric field and shear stress w...
A novel anti-biofouling mechanism based on the combined effects of electric field and shear stress w...
We report a novel nonfouling passivation method using poly(ethylene glycol) (PEG) engraftment on th...
In this study, a surface with patterned wettability by means of surface structuring, rather than thr...
The Author(s) 2009. This article is published with open access at Springerlink.com Abstract Fast adv...
ii Performance of biomedical devices to a large extent depends on the interactions between the devic...