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Inorganic nanoparticles

MEM devices, thin films, (fullerenes, nanotubes, nanofibers, integrated circuits) dendritic polymers, nanoparticles, inorganic-organic nanocomposites nanoelectronic devices)... [Pg.3]

Since some structural and dynamic features of w/o microemulsions are similar to those of cellular membranes, such as dominance of interfacial effects and coexistence of spatially separated hydrophilic and hydrophobic nanoscopic domains, the formation of nanoparticles of some inorganic salts in microemulsions could be a very simple and realistic way to model or to mimic some aspects of biomineralization processes [216,217]. [Pg.491]

The sacrificial core approach entails depositing a coating on the surface of particles by either the controlled surface precipitation of inorganic molecular precursors from solution or by direct surface reactions [2,3,5,6,8,9,33-35,38], followed by removal of the core by thermal or chemical means. Using this approach, micron-size hollow capsules of yttrium compounds [2], silica spheres [38], and monodisperse hollow silica nanoparticles [3,35] have been generated. [Pg.515]

Core/shell-type nanoparticles ovm ated with higher band inorganic materials exhibit high PL quantum yield compared with uncoated dots d K to elimination of surface non-radiative recombination defects. Such core/shell structures as CdSe/CdS [6] and CdSe ZnS [7] have been prepared from organometaHic precursors. [Pg.757]

Li Q, Walter EC, van der Veer WE, Murray BJ, Newberg JT, Bohannan EW, Switzer JA, Hemminger JC, Penner RM (2005) Molybdenum disulfide nanowires and nanoribbons by electrochemical/chemical synthesis. J Phys Chem B 109 3169-3182 Tenne R, Homyonfer M, Feldman Y (1998) Nanoparticles of layered compounds with hollow cage structures (inorganic fuUerene-like structures). Chem Mater 10 3225-3238 Shibahara T (1993) Syntheses of sulphur-bridged molybdenum and tungsten coordination compounds. Coord Chem Rev 123 73-147... [Pg.55]

For many years, research efforts in materials chemistry have focused on the development of new methods for materials synthesis. Traditional areas of interest have included the synthesis of catalytic, electronic, and refractory materials via aqueous methods (sol-gel and impregnation) and high-temperature reactions [1-3]. More recent strategies have focused on the synthesis of materials with tailored properties and structures, including well-defined pores, homogeneously distributed elements, isolated catalytic sites, comphcated stoichiometries, inorganic/organic hybrids, and nanoparticles [4-13]. A feature... [Pg.70]

Density Functional Theory (DFT) has shown that low-coordinated sites on the gold nanoparticles can adsorb small inorganic molecules such as O2 and CO, and the presence of these sites is the key factor for the catal5dic properties of supported gold nanoclusters. Other contributions, induced by the presence of the support, can provide parallel channels for the reaction and modulate the final efficiency of Au-based catalysts. Also these calculations extended for the adsorption of O and CO on flat and... [Pg.97]


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See also in sourсe #XX -- [ Pg.280 ]

See also in sourсe #XX -- [ Pg.9 ]




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Atom-transfer radical polymerization inorganic nanoparticles

Composite organic-inorganic nanoparticles

Composite organic-inorganic nanoparticles COIN)

Example Predominantly inorganic nanoparticle formation in acid drainage

Hollow inorganic nanoparticles

Hybrid materials, organic-inorganic nanoparticle-based

Hybrid-monolayers of dendritic polymers with inorganic nanoparticles

Inorganic Silica Nanoparticles

Inorganic colloidal nanoparticles

Inorganic fullerene-like nanoparticles

Inorganic gold nanoparticles

Inorganic nanoparticle

Inorganic nanoparticle

Inorganic nanoparticle materials, cost

Inorganic nanoparticle modification

Inorganic nanoparticles graphene

Inorganic nanoparticles/nanowires

Ionic Liquids in Material Synthesis Functional Nanoparticles and Other Inorganic Nanostructures

Ionomer inorganic nanoparticles

Nanoparticle-shelled inorganic capsules

Nanoparticles Inorganic nanotubes

Nanoparticles inorganic films

Nanoparticles, biological inorganic

Nanoparticles/nanostructures inorganic

Organic/inorganic nanoparticles

Oxide nanoparticles, inorganic

Polymer Inorganic Nanoparticle Solar Cells

Solar cells inorganic nanoparticle

Surface Biofunctionalization of Inorganic Silica Nanoparticles

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