Polydimethylsiloxane (DMS) is a popular material for microfluidics, but it is hydrophobic and is prone to non-specific protein adsorption. In this study, we explore methods for producing stable, protein resistant, tetraglyme plasma polymer coatings on PDMS by combining extended baking processes with multiple plasma polymer coating steps. We demonstrate that by using this approach, it is possible to produce a plasma polymer coatings that resist protein adsorption (< 10 ng/cm(2)) and are stable to storage over at least 100 days. This methodology can translate to any plasma polymer system, enabling the introduction of a wide range of surface functionalities on PDMS surfaces
For the modification of the surface energy of polymers, organosilicon coatings provide good optical ...
Fast advancements of microfabrication processes in past two decades have reached to a fairly matured...
Plasma polymerization has emerged as an appealing technique for surface modification because of its ...
A straightforward approach to generate a stable and protein- resistant poly(dimethylsiloxane) (PDMS)...
Poly(dimethylsiloxane), PDMS, a versatile elastomer, is the polymer of choice for microfluidic syste...
These days polydimethylsiloxane (PDMS) is one of the most used materials in microfluidic research la...
Poly(dimethylsiloxane), PDMS, a versatile elastomer, is the polymer of choice for microfluidic syst...
A durable hydrophilic and protein-resistant surface of polydimethylsiloxane (PDMS) based devices is ...
As awareness of environmental protection increases, environmentally friendly coatings have been rece...
Title: Thin films of plasma polymers as stable supports for biomedical applications Author: Ivan Gor...
This thesis is focused on the generation, characterisation and application of PEG-like, low fouling ...
Non-specific protein adsorption is detrimental to the performance of many biomedical devices. Polyst...
Biomaterials are defined as materials to interact or be in contact with biological systems. This pap...
This paper presents a study of EOF properties of plasma-polymerized microchannel surfaces and the ef...
Plasma enhanced chemical vapor deposition is a promising process for the generation of tailor-made p...
For the modification of the surface energy of polymers, organosilicon coatings provide good optical ...
Fast advancements of microfabrication processes in past two decades have reached to a fairly matured...
Plasma polymerization has emerged as an appealing technique for surface modification because of its ...
A straightforward approach to generate a stable and protein- resistant poly(dimethylsiloxane) (PDMS)...
Poly(dimethylsiloxane), PDMS, a versatile elastomer, is the polymer of choice for microfluidic syste...
These days polydimethylsiloxane (PDMS) is one of the most used materials in microfluidic research la...
Poly(dimethylsiloxane), PDMS, a versatile elastomer, is the polymer of choice for microfluidic syst...
A durable hydrophilic and protein-resistant surface of polydimethylsiloxane (PDMS) based devices is ...
As awareness of environmental protection increases, environmentally friendly coatings have been rece...
Title: Thin films of plasma polymers as stable supports for biomedical applications Author: Ivan Gor...
This thesis is focused on the generation, characterisation and application of PEG-like, low fouling ...
Non-specific protein adsorption is detrimental to the performance of many biomedical devices. Polyst...
Biomaterials are defined as materials to interact or be in contact with biological systems. This pap...
This paper presents a study of EOF properties of plasma-polymerized microchannel surfaces and the ef...
Plasma enhanced chemical vapor deposition is a promising process for the generation of tailor-made p...
For the modification of the surface energy of polymers, organosilicon coatings provide good optical ...
Fast advancements of microfabrication processes in past two decades have reached to a fairly matured...
Plasma polymerization has emerged as an appealing technique for surface modification because of its ...