Lectures on Electrochemical Corrosion

Lectures on Electrochemical Corrosion
Author: Marcel Pourbaix
Publisher: Springer Science & Business Media
Total Pages: 352
Release: 2012-12-06
Genre: Science
ISBN: 1468418068

Workers in the field of corrosion and their students are most fortunate that a happy set of circumstances brought Dr. Marcel Pourbaix into their field in 1949. First, he was invited, while in the USA, to demonstrate at a two week visit to the National Bureau of Standards the usefulness of his electro chemical concepts to the study of corrosion. Secondly, also around the same time, Prof. H. H. Uhlig made a speech before the United Nations which pointed out the tremendous economic consequences of corrosion. Because of these circumstances, Dr. Pourbaix has reminisced, he chose to devote most of his efforts to corrosion rather than to electrolysis, batteries, geology, or any of the other fields where, one might add, they were equally valuable. This decision resulted in his establishing CEBELCOR (Centre BeIge d'Etude de la Corrosion) and in his development of a course at the Free University of Brussels entitled "Lectures on Electrochemical Corrosion." This book is the collection of these lectures translated into English.

Electrochemical Reactions and Mechanisms in Organic Chemistry

Electrochemical Reactions and Mechanisms in Organic Chemistry
Author: J. Grimshaw
Publisher: Elsevier
Total Pages: 415
Release: 2000-12-01
Genre: Science
ISBN: 0080530729

Electrochemical reactions make significant contributions to organic synthesis either in the laboratory or on an industrial scale. These methods have the potential for developing more "green" chemical synthesis. Over recent years, modern investigations have clarified the mechanisms of important organic electrochemical reactions. Progress has also been made in controlling the reactivity of intermediates through either radical or ionic pathways. Now is the time to gather all the electrochemical work into a textbook.As an essential addition to the armory of synthetic organic chemists, electrochemical reactions give results not easily achieved by many other chemical routes. This book presents a logical development of reactions and mechanisms in organic electrochemistry at a level suited to research scientists and final year graduate students. It forms an excellent starting point from which synthetic organic chemists, in both academia and industry, can appreciate uses for electrochemical methods in their own work. The book is also a reference guide to the literature.

Handbook of Electrochemistry

Handbook of Electrochemistry
Author: Cynthia G. Zoski
Publisher: Elsevier
Total Pages: 935
Release: 2007-02-07
Genre: Science
ISBN: 0444519580

Electrochemistry plays a key role in a broad range of research and applied areas including the exploration of new inorganic and organic compounds, biochemical and biological systems, corrosion, energy applications involving fuel cells and solar cells, and nanoscale investigations. The Handbook of Electrochemistry serves as a source of electrochemical information, providing details of experimental considerations, representative calculations, and illustrations of the possibilities available in electrochemical experimentation. The book is divided into five parts: Fundamentals, Laboratory Practical, Techniques, Applications, and Data. The first section covers the fundamentals of electrochemistry which are essential for everyone working in the field, presenting an overview of electrochemical conventions, terminology, fundamental equations, and electrochemical cells, experiments, literature, textbooks, and specialized books. Part 2 focuses on the different laboratory aspects of electrochemistry which is followed by a review of the various electrochemical techniques ranging from classical experiments to scanning electrochemical microscopy, electrogenerated chemiluminesence and spectroelectrochemistry. Applications of electrochemistry include electrode kinetic determinations, unique aspects of metal deposition, and electrochemistry in small places and at novel interfaces and these are detailed in Part 4. The remaining three chapters provide useful electrochemical data and information involving electrode potentials, diffusion coefficients, and methods used in measuring liquid junction potentials. * serves as a source of electrochemical information * includes useful electrochemical data and information involving electrode potentials, diffusion coefficients, and methods used in measuring liquid junction potentials * reviews electrochemical techniques (incl. scanning electrochemical microscopy, electrogenerated chemiluminesence and spectroelectrochemistry)

Elements of Molecular and Biomolecular Electrochemistry

Elements of Molecular and Biomolecular Electrochemistry
Author: Jean-Michel Savéant
Publisher: John Wiley & Sons
Total Pages: 505
Release: 2006-02-10
Genre: Science
ISBN: 047175806X

This book is based on the George Fisher Baker Lecture given by Jean-Michel Savéant at Cornell University in Fall 2002. * The first book focusing on molecular electrochemistry * Relates to other fields, including photochemistry and biochemistry * Outlines clearly the connection between concepts, experimental illustrations, proofs and supporting methods * Appendixes to provide rigorous demonstrations to prevent an overload of algebra in the main text * Applications-oriented, focused on analyzing the results obtained rather than the methodology

Electrochemical and Chemical Reactivity of Amorphous and Nanocrystalline Materials

Electrochemical and Chemical Reactivity of Amorphous and Nanocrystalline Materials
Author: R. Schulz
Publisher: Trans Tech Publications Ltd
Total Pages: 109
Release: 2001-06-07
Genre: Technology & Engineering
ISBN: 3035705631

Volume is indexed by Thomson Reuters CPCI-S (WoS). This book deals with the chemical and electrochemical reactivity of novel materials in various environments. Special emphasis is put on metastable materials such as amorphous and nanostructured materials including carbon nanostructures and the novel bulk metallic glasses. Properties include corrosion resistance, electrochemical and catalytic activities, hydrogen sorption properties etc. The materials are made by various non-equilibrium processes such as rapid-quenching, high energy ball milling and thin film deposition techniques. Hydrogen storage and new materials for Ni-MH batteries are topics of particular interest in this book.

Principles of Modern Chemistry

Principles of Modern Chemistry
Author: David W. Oxtoby
Publisher: Harcourt Brace College Publishers
Total Pages: 244
Release: 1998-07-01
Genre:
ISBN: 9780030247521

PRINCIPLES OF MODERN CHEMISTRY has dominated the honors and high mainstream general chemistry courses and is considered the standard for the course. The fifth edition is a substantial revision that maintains the rigor of previous editions but reflects the exciting modern developments taking place in chemistry today. Authors David W. Oxtoby and H. P. Gillis provide a unique approach to learning chemical principles that emphasizes the total scientific process'from observation to application'placing general chemistry into a complete perspective for serious-minded science and engineering students. Chemical principles are illustrated by the use of modern materials, comparable to equipment found in the scientific industry. Students are therefore exposed to chemistry and its applications beyond the classroom. This text is perfect for those instructors who are looking for a more advanced general chemistry textbook.

Microreaction Technology

Microreaction Technology
Author: M. Matlosz
Publisher: Springer Science & Business Media
Total Pages: 584
Release: 2012-12-06
Genre: Science
ISBN: 3642567630

IMRET 5 featured more than 80 oral and poster communications, covering the entire interdisciplinary field from design, production, modeling and characterization of microreactor devices to application of microstructured systems for production, energy and transportation, including many analytical and biological applications. A particularly strong topic was the investigation of the potential of microstructuring of reactors and systems components for process intensification. Perspectives of combining local, in situ, data acquisition with appropriate microstructuring of actuators and components within chemical and biological devices were explored in order to enhance process performance and facilitate process control.

JMNM: Electrochemical and Chemical Reactivity of Amorphous and Nanocrystalline Materials

JMNM: Electrochemical and Chemical Reactivity of Amorphous and Nanocrystalline Materials
Author: R. Schulz
Publisher: Trans Tech Publications Ltd
Total Pages: 111
Release: 2001-06-07
Genre: Technology & Engineering
ISBN: 3035730458

Volume is indexed by Thomson Reuters CPCI-S (WoS). This book deals with the chemical and electrochemical reactivity of novel materials in various environments. Special emphasis is put on metastable materials such as amorphous and nanostructured materials including carbon nanostructures and the novel bulk metallic glasses. Properties include corrosion resistance, electrochemical and catalytic activities, hydrogen sorption properties etc. The materials are made by various non-equilibrium processes such as rapid-quenching, high energy ball milling and thin film deposition techniques. Hydrogen storage and new materials for Ni-MH batteries are topics of particular interest in this book.

Chemistry

Chemistry
Author: Bruce Averill
Publisher:
Total Pages: 1233
Release: 2007
Genre: Chemistry
ISBN: 9780321413703

Emphasises on contemporary applications and an intuitive problem-solving approach that helps students discover the exciting potential of chemical science. This book incorporates fresh applications from the three major areas of modern research: materials, environmental chemistry, and biological science.

Atomic-Scale Modelling of Electrochemical Systems

Atomic-Scale Modelling of Electrochemical Systems
Author: Marko M. Melander
Publisher: John Wiley & Sons
Total Pages: 372
Release: 2021-09-09
Genre: Science
ISBN: 1119605636

Atomic-Scale Modelling of Electrochemical Systems A comprehensive overview of atomistic computational electrochemistry, discussing methods, implementation, and state-of-the-art applications in the field The first book to review state-of-the-art computational and theoretical methods for modelling, understanding, and predicting the properties of electrochemical interfaces. This book presents a detailed description of the current methods, their background, limitations, and use for addressing the electrochemical interface and reactions. It also highlights several applications in electrocatalysis and electrochemistry. Atomic-Scale Modelling of Electrochemical Systems discusses different ways of including the electrode potential in the computational setup and fixed potential calculations within the framework of grand canonical density functional theory. It examines classical and quantum mechanical models for the solid-liquid interface and formation of an electrochemical double-layer using molecular dynamics and/or continuum descriptions. A thermodynamic description of the interface and reactions taking place at the interface as a function of the electrode potential is provided, as are novel ways to describe rates of heterogeneous electron transfer, proton-coupled electron transfer, and other electrocatalytic reactions. The book also covers multiscale modelling, where atomic level information is used for predicting experimental observables to enable direct comparison with experiments, to rationalize experimental results, and to predict the following electrochemical performance. Uniquely explains how to understand, predict, and optimize the properties and reactivity of electrochemical interfaces starting from the atomic scale Uses an engaging “tutorial style” presentation, highlighting a solid physicochemical background, computational implementation, and applications for different methods, including merits and limitations Bridges the gap between experimental electrochemistry and computational atomistic modelling Written by a team of experts within the field of computational electrochemistry and the wider computational condensed matter community, this book serves as an introduction to the subject for readers entering the field of atom-level electrochemical modeling, while also serving as an invaluable reference for advanced practitioners already working in the field.