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Underpotential Deposition: From Fundamentals and Theory to Applications at the Nanoscale: Monographs in Electrochemistry

Autor Oscar Alejandro Oviedo, Luis Reinaudi, Silvana Garcia, Ezequiel Pedro Marcos Leiva
en Limba Engleză Hardback – 21 dec 2015
With this volume, Ezequiel P. M. Leiva and co-authors fill a gap in the available literature, by providing a much-needed, comprehensive review of the relevant literature for electrochemists, materials scientists and energy researchers. For the first time, they present applications of underpotential deposition (UPD) on the nanoscale, such as nanoparticles and nanocavities, as well as for electrocatalysis. They also discuss real surface determinations and layer-by-layer growth of ultrathin films, as well as the very latest modeling approaches to UPD based on nanothermodynamics, statistical mechanics, molecular dynamics and Monte-Carlo simulations.
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Specificații

ISBN-13: 9783319243924
ISBN-10: 3319243926
Pagini: 400
Ilustrații: XII, 361 p. 196 illus., 122 illus. in color.
Dimensiuni: 155 x 235 x 22 mm
Greutate: 0.7 kg
Ediția:1st ed. 2016
Editura: Springer International Publishing
Colecția Springer
Seria Monographs in Electrochemistry

Locul publicării:Cham, Switzerland

Public țintă

Research

Cuprins

Introduction.- Phenomenology and Thermodynamics.- Structure of the UPD Phase.- Applications of UPD on Bulk Electrodes as a Model System.- Modelling of Underpotential Deposition on Bulk Electrodes.- UPD at the Nanoscale: Theory and Applications.- UPD: What is Coming Next?.

Recenzii

“This book gives the reader the possibility to gain sufficiently deep insight into the upd phenomenon, both in its applied and theoretical aspects. It can be very useful for specialists in different fields of electrochemistry, surface science and physics, material science, and other fields of science; furthermore, it can serve as the most valuable and unique guidebook for those engaged in upd modeling by the methods of nanothermodynamics, statistical mechanics, molecular dynamics, and Monte Carlo simulations.” (O. A. Petrii, Journal of Solid State Electrochemistry, Vol. 20, 2016)

Notă biografică

Oscar A. Oviedo is Assistant Professor in Physico-Chemical Research Institute of Córdoba (INFIQC-CONICET) at the University of Córdoba, Argentina. His research areas are theoretical electrochemistry, electrocatalysis and in computer developments in physical chemistry.
Luis Reinaudi works as a Professor at the National University of Córdoba (Argentina), and as a Researcher at Physico-Chemical Research Institute of Córdoba (INFIQC-CONICET). His fields of interest are  the study of metallic nanostructures (such as nanoparticles and nanowires), their formation, and their thermal and electrochemical stability, and include renewable energies (particularly the study of fuel cells and lithium batteries), and computer simulations of complex and non-linear systems.
Silvana G. García is Professor of Chemical Engineering since 2005 at the Universidad Nacional del Sur, Bahía Blanca (Argentina). Her working areas are mainly the electrochemical formationof metallic thin films and nanostructures (nanoparticles, nanowires), involving the nucleation and growth mechanisms, and the analysis of the electrocatalytic effect of such structures for reactions of technological interest.
Ezequiel Leiva is Professor at the National University of Córdoba, Argentina, and Principal Researcher of CONICET, at the Physico-Chemical Research Institute of Córdoba (INFIQC). His main interest is in theoretical aspects of electrochemistry. In recent times, he devoted considerable effort to extend the concept of underpotential deposition to the nanoscale, using nanothermodynamics, statistical mechanics and Monte Carlo simulations. Several of these new concepts are embodied in the present book.


Textul de pe ultima copertă

With this volume, Ezequiel P. M. Leiva and co-authors fill a gap in the available literature, by providing a much-needed, comprehensive review of the relevant literature for electrochemists, materials scientists and energy researchers. For the first time, they present applications of underpotential deposition (UPD) on the nanoscale, such as nanoparticles and nanocavities, as well as for electrocatalysis. They also discuss real surface determinations and layer-by-layer growth of ultrathin films, as well as the very latest modeling approaches to UPD based on nanothermodynamics, statistical mechanics, molecular dynamics and Monte-Carlo simulations.

Caracteristici

The first book on this topic covering the nanoscale Provides a critical, comprehensive review of the relevant literature Introduces cutting-edge modelling Includes supplementary material: sn.pub/extras