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Title
Relaxation of the chemical bond [electronic resource] : skin chemisorption size matter ZTP mechanics H2O myths / Chang Q. Sun.
ISBN
9789814585217 electronic book
9814585211 electronic book
9789814585200
Published
Singapore ; New York : Springer, [2014]
Language
English
Description
1 online resource.
Item Number
10.1007/978-981-4585-21-7 doi
Call Number
QD547
Dewey Decimal Classification
541./335
Summary
The aim of this book is to explore the detectable properties of a material to the parameters of bond and non-bond involved and to clarify the interdependence of various properties. This book is composed of four parts; Part I deals with the formation and relaxation dynamics of bond and non-bond during chemisorptions with uncovering of the correlation among the chemical bond, energy band, and surface potential barrier (3B) during reactions; Part II is focused on the relaxation of bonds between atoms with fewer neighbors than the ideal in bulk with unraveling of the bond order-length-strength (BOLS) correlation mechanism, which clarifies the nature difference between nanostructures and bulk of the same substance; Part III deals with the relaxation dynamics of bond under heating and compressing with revealing of rules on the temperature-resolved elastic and plastic properties of low-dimensional materials; Part IV is focused on the asymmetric relaxation dynamics of the hydrogen bond (O:H-O) and the anomalous behavior of water and ice under cooling, compressing, and clustering. The target audience for this book includes scientists, engineers and practitioners in the area of surface science and nanoscience.
Bibliography, etc. Note
Includes bibliographical references.
Access Note
Access limited to authorized users.
Source of Description
Description based on online resource; title from PDF title page (viewed Apr. 7, 2014).
Series
Springer series in chemical physics ; v. 108.
Available in Other Form
Printed edition: 9789814585200
From the Contents: Part I Molecular Chemisorption
Introduction
Foundations
STM and LEED: Atomic Valences and Bond Geometry
Part II Atomic Undercoordination
Introduction
Principles: BOLS and NEP
Surface Relaxation and Nanosolid Densification
Part III Mechano and Thermo Activation
Introduction
Principles
Liquid and Solid Surfaces
Part IV Water and Ice
Introduction
Principles: Hypotheses and Expectations.