Organometallic poly(ferrocenylsilane)s (PFSs) featuring redox responsive ferrocene units in their main chain are prepared and characterized for redox triggered film disassembly and release of molecular payloads. Positively or negatively charged side groups render PFS water soluble and these polyelectrolytes also allow the use of an electrostatic self-assembly process for the fabrication of novel functional supermolecular nanostructures. The layer-by-layer (LbL) electrostatic fabrication approach is utilized to obtain films with different bilayer numbers. The electrochemical behaviour of the multilayers with different thicknesses is recorded by capturing cyclic voltammograms (CVs). Film disassembly (multilayer re-dispersed in water) is perfo...
The synthesis and characterization of electrode-supported poly(ferrocenylsilane) (PFS) films bearing...
Redox-responsive poly(ferrocenylsilane) (PFS) is used to construct nanocontainers that can be loade...
International audienceWe developed a new platform at the interface of polyelectrolyte multilayers (P...
Organometallic poly(ferrocenylsilane)s (PFSs) featuring redox responsive ferrocene units in their ma...
A novel platform technology for a tunable molecular payload release, employing complex release profi...
Layer by layer (LbL) organometallic multilayers, composed of poly(ferrocenylsilane) (PFS) polycation...
Poly(ferrocenyl(3-bromopropyl)methylsilane) and poly(ethylene imine) are employed in a layer-by-laye...
In this Thesis, we aimed at developing novel tailored architectures and exploring rationally designe...
New frontiers in polymer science involve the incorporation of functional species into material syste...
We report on the fabrication and characterization of fully organometallic multilayer thin films, com...
New frontiers in polymer science involve the incorporation of functional species into material syste...
Poly(ferrocenyl(3-bromopropyl)methylsilane) and poly(ethylene imine) are employed in a layer-by-...
We report on the layer-by-layer (LBL) supramolecular assembly of redox responsive, organometallic po...
Robust fabrication of electroactive multilayer films from a cationic metallocene-containing polymer ...
Chemically modified electrodes, decorated with covalently tethered poly(ferrocenylsilane) – PFS chai...
The synthesis and characterization of electrode-supported poly(ferrocenylsilane) (PFS) films bearing...
Redox-responsive poly(ferrocenylsilane) (PFS) is used to construct nanocontainers that can be loade...
International audienceWe developed a new platform at the interface of polyelectrolyte multilayers (P...
Organometallic poly(ferrocenylsilane)s (PFSs) featuring redox responsive ferrocene units in their ma...
A novel platform technology for a tunable molecular payload release, employing complex release profi...
Layer by layer (LbL) organometallic multilayers, composed of poly(ferrocenylsilane) (PFS) polycation...
Poly(ferrocenyl(3-bromopropyl)methylsilane) and poly(ethylene imine) are employed in a layer-by-laye...
In this Thesis, we aimed at developing novel tailored architectures and exploring rationally designe...
New frontiers in polymer science involve the incorporation of functional species into material syste...
We report on the fabrication and characterization of fully organometallic multilayer thin films, com...
New frontiers in polymer science involve the incorporation of functional species into material syste...
Poly(ferrocenyl(3-bromopropyl)methylsilane) and poly(ethylene imine) are employed in a layer-by-...
We report on the layer-by-layer (LBL) supramolecular assembly of redox responsive, organometallic po...
Robust fabrication of electroactive multilayer films from a cationic metallocene-containing polymer ...
Chemically modified electrodes, decorated with covalently tethered poly(ferrocenylsilane) – PFS chai...
The synthesis and characterization of electrode-supported poly(ferrocenylsilane) (PFS) films bearing...
Redox-responsive poly(ferrocenylsilane) (PFS) is used to construct nanocontainers that can be loade...
International audienceWe developed a new platform at the interface of polyelectrolyte multilayers (P...