Polyelectrolyte multilayer coatings (PEM) are prepared by alternative layer-by-layer deposition of cationic and anionic polyelectrolyte monolayers on charged surfaces. The thickness of the coatings ranges from nm to few μm. Their properties such as roughness, stiffness, surface charge and surface energy can be precisely tuned to fulfil different technical or biological requirements. The coating process is based on self-assembly of polyelectrolytes. Advantages of these coatings are their easy handling, no harsh chemistry and the possibility for coatings on complex geometries. The PEM coatings can be prepared from a variety of suitable polyelectrolytes. Their stability varies from very durable PEM coatings that are only soluble in strong solv...
A strategy was developed to produce thin, biopolymer-based polyelectrolyte multilayer films, based o...
Polyelectrolyte multilayer (PEM) coatings on biomaterials are applied to tailor adhesion, growth, an...
Adhesion of host cells on the surface of implants is necessary for a healthy ingrowth of the implant...
Polyelectrolyte multi-layer (PEM) coatings are prepared by alternative deposition of single polyelec...
The prevention of pathogen colonization of medical implants represents a major medical and financial...
Polyelectrolyte multi-layer (PEM) coatings are prepared by alternative deposition of single polyelec...
Polyelectrolyte multilayers (PEMs) represent a group of polyelectrolyte complex (PEC)–based material...
The synergistic relationship between structure and the bulk properties of polyelectrolyte multilayer...
A biocompatible polyelectrolyte complex multilayer (PECML) film consisting of poly-L-lysine (PLL) as...
Polyelectrolyte multilayer assembly is one of the most widely applied biomaterial coatings for appli...
Surface functionalization of materials to improve their hemocompatibility is a challenging problem i...
Establishing highly sophisticated polymer films for delivery systems in a biological environment and...
This review gives a short overview of the physical processes involved in the formation of the polyel...
The layer-by-layer assembly of polyelectrolyte multilayers (PEMs) from natural or synthetic polyelec...
Polyelectrolytic multilayers (PEMs) with enhanced antibacterial properties were built up onto commer...
A strategy was developed to produce thin, biopolymer-based polyelectrolyte multilayer films, based o...
Polyelectrolyte multilayer (PEM) coatings on biomaterials are applied to tailor adhesion, growth, an...
Adhesion of host cells on the surface of implants is necessary for a healthy ingrowth of the implant...
Polyelectrolyte multi-layer (PEM) coatings are prepared by alternative deposition of single polyelec...
The prevention of pathogen colonization of medical implants represents a major medical and financial...
Polyelectrolyte multi-layer (PEM) coatings are prepared by alternative deposition of single polyelec...
Polyelectrolyte multilayers (PEMs) represent a group of polyelectrolyte complex (PEC)–based material...
The synergistic relationship between structure and the bulk properties of polyelectrolyte multilayer...
A biocompatible polyelectrolyte complex multilayer (PECML) film consisting of poly-L-lysine (PLL) as...
Polyelectrolyte multilayer assembly is one of the most widely applied biomaterial coatings for appli...
Surface functionalization of materials to improve their hemocompatibility is a challenging problem i...
Establishing highly sophisticated polymer films for delivery systems in a biological environment and...
This review gives a short overview of the physical processes involved in the formation of the polyel...
The layer-by-layer assembly of polyelectrolyte multilayers (PEMs) from natural or synthetic polyelec...
Polyelectrolytic multilayers (PEMs) with enhanced antibacterial properties were built up onto commer...
A strategy was developed to produce thin, biopolymer-based polyelectrolyte multilayer films, based o...
Polyelectrolyte multilayer (PEM) coatings on biomaterials are applied to tailor adhesion, growth, an...
Adhesion of host cells on the surface of implants is necessary for a healthy ingrowth of the implant...