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Atomistic and Electronic Structure Methods for Nanostructured Oxide Interfaces

Chapter
Publication Date:
2016
abstract:
An overview is given of methods for the computational prediction of the atomistic and electronic structures of nanoscale oxide interfaces. Global optimization approaches for structure prediction, together with total energy and electronic structure methods are reviewed and discussed. Our aim is to furnish conceptual instruments to select the optimal (i.e., the most accurate and least costly) method for treating a given system, and to understand the potentialities and limitations of current approaches. Theoretical modeling of the structural, catalytic, mechanical, optical and magnetic properties 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.
Iris type:
02.01 Contributo in volume (Capitolo o Saggio)
Keywords:
2d materials - theoretical modeling
List of contributors:
NEGREIROS RIBEIRO, Fabio; Fortunelli, Alessandro; Barcaro, Giovanni; Sementa, Luca
Authors of the University:
BARCARO GIOVANNI
FORTUNELLI ALESSANDRO
SEMENTA LUCA
Handle:
https://iris.cnr.it/handle/20.500.14243/323186
Book title:
Oxide Materials at the Two-Dimensional Limit
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