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Titlebook: Oxide Materials at the Two-Dimensional Limit; Falko P. Netzer,Alessandro Fortunelli Book 2016 Springer International Publishing Switzerlan

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Giovanni Barcaro,Luca Sementa,Fabio Ribeiro Negreiros,Iorwerth Owain Thomas,Stefan Vajda,Alessandro
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Atomistic and Electronic Structure Methods for Nanostructured Oxide Interfaces, of nanoscale oxides is also briefly described. Finally, an outlook on extending computational and experimental investigation from crystalline-like to amorphous oxide ultrathin layers and the challenges to be faced when dealing with these more complex systems is presented. Final remarks conclude the chapter.
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Two-Dimensional Electron Gas at Oxide Interfaces, the question, “How can the interface between two insulators be conducting?” Throughout the chapter, in addition to the model LaAlO./SrTiO. system, we provide the reader with a sampling of what has been learned from other oxide heterostructures through both experiment and theory.
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Catalytic Chemistry on Oxide Nanostructures,r C–H bond activation, multifunctional catalytic sites at copper/cerium-oxide island interfaces for water-gas shift reactions, and (WO.). and (MoO.). nanoclusters with active dioxo, O=M=O, moieties for dehydration and partial oxidation of alcohols.
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Characterizing Defects Responsible for Charge Transport Characteristics at Interfaces of Nano-Thickes are affected by charge transfer characteristics of these multilayer stacks. We discuss collaboration between electrical measurements and computational modeling leading to identification of defects responsible for degradation phenomena in nm-thin dielectric films employed as gate dielectrics in metal oxide field effect transistors.
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0933-033X aspects of two-dimensional oxide systems.Displays new applicThis book summarizes the current knowledge of two-dimensional oxide materials. The fundamental properties of 2-D oxide systems are explored in terms of atomic structure, electronic behavior and surface chemistry. The concept of polarity in
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Structure Concepts in Two-Dimensional Oxide Materials,ntify the major structure-determining descriptors. Categories of oxide structures are introduced, and the important role of the various degrees of freedom of the metal-oxide interface parameters for 2-D structure formation and stability is highlighted with the help of prototypical examples.
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