The Surface Chemistry of Metals and Semiconductors

The Surface Chemistry of Metals and Semiconductors
Title The Surface Chemistry of Metals and Semiconductors PDF eBook
Author Electrochemical Society. Corrosion Division
Publisher
Pages 552
Release 1960
Genre Metals
ISBN

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Corrosion and Surface Chemistry of Metals

Corrosion and Surface Chemistry of Metals
Title Corrosion and Surface Chemistry of Metals PDF eBook
Author Dieter Landolt
Publisher CRC Press
Pages 634
Release 2007-05-02
Genre Mathematics
ISBN 1439807884

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Providing a carefully developed and comprehensive overview of the corrosion chemistry of metallic materials, this book covers the principal methods of corrosion prevention. It includes a systematic study of the physical chemistry of the surface supported by state-of-the-art analysis methods. The author builds a scientific foundation by developing t

The Surface Chemistry of Metals and Semiconductors

The Surface Chemistry of Metals and Semiconductors
Title The Surface Chemistry of Metals and Semiconductors PDF eBook
Author Electrochemical Society. Corrosion Division
Publisher
Pages 550
Release 1960
Genre Science
ISBN

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Chemical Bonding at Surfaces and Interfaces

Chemical Bonding at Surfaces and Interfaces
Title Chemical Bonding at Surfaces and Interfaces PDF eBook
Author Anders Nilsson
Publisher Elsevier
Pages 533
Release 2011-08-11
Genre Science
ISBN 0080551912

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Molecular surface science has made enormous progress in the past 30 years. The development can be characterized by a revolution in fundamental knowledge obtained from simple model systems and by an explosion in the number of experimental techniques. The last 10 years has seen an equally rapid development of quantum mechanical modeling of surface processes using Density Functional Theory (DFT). Chemical Bonding at Surfaces and Interfaces focuses on phenomena and concepts rather than on experimental or theoretical techniques. The aim is to provide the common basis for describing the interaction of atoms and molecules with surfaces and this to be used very broadly in science and technology. The book begins with an overview of structural information on surface adsorbates and discusses the structure of a number of important chemisorption systems. Chapter 2 describes in detail the chemical bond between atoms or molecules and a metal surface in the observed surface structures. A detailed description of experimental information on the dynamics of bond-formation and bond-breaking at surfaces make up Chapter 3. Followed by an in-depth analysis of aspects of heterogeneous catalysis based on the d-band model. In Chapter 5 adsorption and chemistry on the enormously important Si and Ge semiconductor surfaces are covered. In the remaining two Chapters the book moves on from solid-gas interfaces and looks at solid-liquid interface processes. In the final chapter an overview is given of the environmentally important chemical processes occurring on mineral and oxide surfaces in contact with water and electrolytes. - Gives examples of how modern theoretical DFT techniques can be used to design heterogeneous catalysts - This book suits the rapid introduction of methods and concepts from surface science into a broad range of scientific disciplines where the interaction between a solid and the surrounding gas or liquid phase is an essential component - Shows how insight into chemical bonding at surfaces can be applied to a range of scientific problems in heterogeneous catalysis, electrochemistry, environmental science and semiconductor processing - Provides both the fundamental perspective and an overview of chemical bonding in terms of structure, electronic structure and dynamics of bond rearrangements at surfaces

Electrochemistry at Metal and Semiconductor Electrodes

Electrochemistry at Metal and Semiconductor Electrodes
Title Electrochemistry at Metal and Semiconductor Electrodes PDF eBook
Author Norio Sato
Publisher Elsevier
Pages 413
Release 1998-10-09
Genre Science
ISBN 0080530737

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Electrochemisty at Metal and Semiconductor Electrodes covers the structure of the electrical double layer and charge transfer reactions across the electrode/electrolyte interface. The purpose of the book is to integrate modern electrochemistry and semiconductor physics, thereby, providing a quantitative basis for understanding electrochemistry at metal and semiconductor electrodes. Electrons and ions are the principal particles which play the main role in electrochemistry. This text, therefore, emphasizes the energy level concepts of electrons and ions rather than the phenomenological thermodynamic and kinetic concepts on which most of the classical electrochemistry texts are based. This rationalization of the phenomenological concepts in terms of the physics of semiconductors should enable readers to develop more atomistic and quantitative insights into processes that occur at electrodes. The book incorporates many traditional disciplines of science and engineering such as interfacial chemistry, biochemistry, enzyme chemistry, membrane chemistry, metallurgy, modification of solid interfaces, and materials' corrosion. The text is intended to serve as an introduction for the study of advanced electrochemistry at electrodes and is aimed towards graduates and senior undergraduates studying materials and interfacial chemistry or those beginning research work in the field of electrochemistry.

Corrosion and Surface Chemistry of Metals

Corrosion and Surface Chemistry of Metals
Title Corrosion and Surface Chemistry of Metals PDF eBook
Author Dieter Landolt
Publisher EPFL Press
Pages 640
Release 2007-05-02
Genre Science
ISBN 9780849382338

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Chemistry of the Semiconductor Industry

Chemistry of the Semiconductor Industry
Title Chemistry of the Semiconductor Industry PDF eBook
Author S.J. Moss
Publisher Springer Science & Business Media
Pages 456
Release 1989-02-28
Genre Technology & Engineering
ISBN 9780216920057

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This book covers the chemistry of the major processes involved in the manufacture of integrated circuits. The authors describe all the major processes in use, together with some interesting processes which are currently being developed and hold future promise. Each chapter covers the current state of knowledge of the underlying chemistry of a particular process, and identifies areas of uncertainty requiring further research.