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Structures and dynamics of interfacial water / / Duanyun Cao



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Autore: Cao Duanyun Visualizza persona
Titolo: Structures and dynamics of interfacial water / / Duanyun Cao Visualizza cluster
Pubblicazione: Dordrecht, Netherlands : , : Springer, , [2023]
©2023
Edizione: 1st ed. 2023.
Descrizione fisica: 1 online resource (149 pages)
Disciplina: 612.01583
Soggetto topico: Biological interfaces
Condensed matter
Molecular structure
Water chemistry
Nota di bibliografia: Includes bibliographical references.
Nota di contenuto: Introduction -- The Theoretical Research Methods Involved in this Paper -- Structure and Growth Mechanism of Two-dimensional Ice on Hydrophobic Metal Surface -- Structure and Phase Transition of Water Coating on Hydrophilic Metal Surface -- Structure and Kinetics of Ion Hydrates At The Interface -- Summary and Prospect.
Sommario/riassunto: This thesis highlights the study into the structures and dynamics of interfacial water, which is a cutting edge issue in condensed matter physics. Using the first principles calculation, classical molecular dynamics simulation and the simulation of atomic force microscopy (AFM), combined with the experimental results of AFM, the book systematically studies interfacial water at the atomic scale, especially the structure and growth mechanism of two-dimensional ice on hydrophobic Au (111) surface, the structure and the interconversion of the Eigen/Zundel hydrated proton on the Au(111) and Pt(111) surfaces, the microstructure and the hydration effect of the diffusion of ion hydrates on NaCl surface. This book displays the atomic scale information about the interaction between water and surface, and achieves many innovative results. Furthermore, the research methods included in this book can be further extended to study the more complex interfacial systems.
Titolo autorizzato: Structures and Dynamics of Interfacial Water  Visualizza cluster
ISBN: 9789811969218
9789811969201
Formato: Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione: Inglese
Record Nr.: 9910682563203321
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Serie: Springer theses.