Fuzzy Nanoassemblies: Toward Layered Polymeric Multicomposites

Неясные наноассамблеи: к созданию слоистых полимерных мультикомпозитов
Gero Decher
1997-08-29

Langmuir–Blodgett techniquefuzzy nanoassemblieslayered polymeric multicompositesmultilayer filmspolyanion–polycation layer-by-layer adsorption
Multilayer films of organic compounds on solid surfaces have been studied for more than 60 years because they allow fabrication of multicomposite molecular assemblies of tailored architecture. However, both the Langmuir-Blodgett technique and chemisorption from solution can be used only with certain classes of molecules. An alternative approach—fabrication of multilayers by consecutive adsorption of polyanions and polycations—is far more general and has been extended to other materials such as proteins or colloids. Because polymers are typically flexible molecules, the resulting superlattice architectures are somewhat fuzzy structures, but the absence of crystallinity in these films is expected to be beneficial for many potential applications.
1
Absence of crystallinity in polymer-based multilayers is expected to be beneficial for many potential applications.
2
Consecutive adsorption of polyanions and polycations provides a general alternative for fabricating multilayer films on solid surfaces.
3
Polymers' flexibility leads to 'fuzzy' (noncrystalline) superlattice architectures in these multilayer films.
4
The layer-by-layer polyelectrolyte assembly method extends multilayer fabrication to materials beyond small molecules, including proteins and colloids.

Multilayer polymeric films assembled by consecutive adsorption of polyanions and polycations on solid surfaces (layered polymeric multicomposites)

Formation, structural character (fuzzy, non-crystalline superlattice architectures), and generality/applicability of multilayer assemblies created by layer-by-layer adsorption of polyelectrolytes (polyanions and polycations)

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1997-08-29
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Gero Decher
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