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Complex systems, obtained from spin coating

Figure 9.4 Examples of complex systems obtained from spin coating deposition, (a) Hybrid TiOj/PHEMA-co-PGMA [34] and (b) Si02A/V03 nanoparticle [35] based 1D Bragg reflectors. Hybrid spin-coated resist patterned... Figure 9.4 Examples of complex systems obtained from spin coating deposition, (a) Hybrid TiOj/PHEMA-co-PGMA [34] and (b) Si02A/V03 nanoparticle [35] based 1D Bragg reflectors. Hybrid spin-coated resist patterned...
In the second approach, metal-ion/complex was first attached to one of the polymer blocks. A thin film of the resulting polymer metal complex was then obtained by spin coating/solution casting. Alternatively, the polymer metal complex may also be dissolved in a suitable solvent system that selectively dissolves one of the blocks. Micelles or nanosized aggregates formed in this case. The micellization of amphiphilic block copolymers and their use in the formation of metal nanoparticles has been discussed previously.44 A monolayer of micelles was introduced on a substrate surface by dipping or electrostatic attraction. The substrate was then subjected to further chemical or physical treatments as mentioned earlier. The third approach involves the formation of micelles from the metal-free block copolymer in a suitable solvent system. The micelle solution was then added with metal ion, which was selectively coordinated to one of the blocks. These micelle-metal complexes can also be processed by a procedures similar to the second approach. [Pg.218]


See other pages where Complex systems, obtained from spin coating is mentioned: [Pg.249]    [Pg.249]    [Pg.403]    [Pg.129]    [Pg.291]    [Pg.486]    [Pg.81]    [Pg.339]   


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Coatings systems

Complex systems

Complex systems complexes

Spin systems

Systems complexity

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