Metal Oxide Nanoparticles in Organic Solvents discusses recent advances in the chemistry involved for the controlled synthesis and assembly of metal oxide nanoparticles, the characterizations required by such nanoobjects, and their size and shape depending properties.
Innovative strategies have to be developed to allow good control from the molecular precursor to the final product at low processing temperatures. In the last few years, a valuable alternative to the well-known aqueous sol-gel processes was developed in the form of nonaqueous solution routes, which can roughly be divided into two methodologies; namely surfactant- and solvent-controlled preparation routes.
Metal Oxide Nanoparticles in Organic Solvents reviews and compares surfactant- and solvent-controlled routes, as well as providing an overview of the most important techniques for the characterization of metal oxide nanoparticles, crystallization pathways, the physical properties of metal oxide nanoparticles, their applications in diverse fields of technology, and their assembly into larger nano- and mesostructures.
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Pages Aqueous and Nonaqueous Sol-Gel Chemistry. Surfactant-Assisted Synthesis.
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Angewandte Chemie International Edition 43 17 , , Journal of the American Chemical Society 29 , , Microwave chemistry for inorganic nanomaterials synthesis I Bilecka, M Niederberger Nanoscale 2 8 , , Nonaqueous sol—gel routes to metal oxide nanoparticles M Niederberger Accounts of chemical research 40 9 , , Organic reaction pathways in the nonaqueous synthesis of metal oxide nanoparticles M Niederberger, G Garnweitner Chemistry—A European Journal 12 28 , , Benzyl alcohol and titanium tetrachloride a versatile reaction system for the nonaqueous and low-temperature preparation of crystalline and luminescent titania nanoparticles M Niederberger, MH Bartl, GD Stucky Chemistry of Materials 14 10 , , Advanced Materials 12 3 , , One-minute synthesis of crystalline binary and ternary metal oxide nanoparticles I Bilecka, I Djerdj, M Niederberger Chemical Communications, , Chemistry of Materials 16 7 , ,