Book Description
"Should be on every surface chemist's reading list." -Spectroscopy (on the Fifth Edition)
Bridging the methodologies of "wet" and "dry" surface chemistry to present surface chemistry as a single broad field, Physical Chemistry of Surfaces, Sixth Edition retains its position as the standard work of surface science. This heavily revised and updated edition provides thorough coverage for students and professionals. New features of the Sixth Edition include:
* Expanded treatment of films at the liquid-air and liquid-solid interfaces, with contemporary techniques and macromolecular films
* Techniques for tunneling and atomic force scanning microscopes
* In-depth coverage of heterogeneous catalysis, including the case of CO on metals
* Increased emphasis on the flexible surface and restructuring of surfaces when adsorption occurs
* A new chapter on macromolecular films
The book begins with the basics of the physical chemistry of liquid-gas and liquid-solid interfaces, including electro-chemistry, long-range forces, and the various methods of spectroscopic and structural study of surfaces. These are followed by descriptive treatments of topics such as friction, lubrication, adhesion and emulsion, foams, and aerosols. Closing chapters present a quantitative approach to physical and chemical adsorption of vapors and gases as well as heterogeneous catalysis.
For senior-level undergraduates and graduate students, each chapter presents the basic surface chemistry of the topics with full derivations, end-of-chapter problems, and reviews of recent advances. This book is also an excellent reference for professional chemists interested in applying surface chemistry to their work.
Customer Reviews:
Great book for reference.......2006-08-03
I had this book as my textbook for my "surface science" class. It is a great book for reference though it does take time and effort to comb through chapters to find what you need. A lot of detailed paper-review-style chaptors which is great for research while it is a little bit overwhelming to people without any physical chemistry background.
Excellent overview or starting point.......2004-06-17
How useful and valuable this book is largely depends on what you expect from it. This book provies an overview of the extremely broad field of surface chemistry. As a starting point to learning about that field, this book is excellent. There is validity to the criticisms offered by some other reviewers of this text. The derivations often don't give enough detail and there's not much help in the way of example problems, which can make it difficult for the student to use in a classroom setting. Do not expect extremely detailed and thorough treatments of any particular area of surface chemistry. Nearly any chapter in this book could (and does) have entire texts (and courses) devoted exclusively to that one subject. What you can expect from this book is an introduction to the key areas of surface chemistry. The book is loaded with references to point the interested reader in the right direction for more detailed and thorough treatments of the variety of different areas of surface chemistry. For this reason, I have found it to be a good starting point for learning more about several subjects. In short, this book is excellent if you want a broad overview of the field or need a place to start learning about a particular area of surface chemistry. It's not worth much if you are looking for extremely in depth, thorough treatments of specific areas of surface chemistry.
Physical Chemistry of Surfaces.......2001-11-12
I used this book as a text in my class 'Physical Chemistry of Liquids, Interfaces, and Colloids'. This book is not a textbook. My students are complaining all the time about the presentation of topics as well as the extent of derivations, interpretations, and lack of examples. I must admit that I have made a mistake for choosing this text for my course. If you are planing to use it as a text, please go through a few of the derivations and you will notice that the book offers very little to a student.
The new edition is a lot worse than the earlier editions.......1999-05-27
I have found the book very difficult to follow. The book reads more like a research paper than a textbook, in both style and content (for example, there are too many references, most of which are completely unnecesary). Many symbols are left undefined. There are many gaps in the derivations. Many concepts (e.g. the Maragoni effect) are introduced out of proper context. I would not recommend it to anybody. Get an earlier edition if you can.
To many references.......1998-11-17
It was the text book of a discipline in my graduate couse. I and my friends had too many troubles with it, the text is dry with to many references. The text simply order you to look for some reference, instead of explain some obscure part of theory. We only understood many of the problems after Adamson sent the problems answer. The solve some problems we must looked for some references cited in the text, and that took a lot of time. During the couse we used to say that some problems are impossible to solve, others you don't give the correct answer, and the last ones you solve correctely, but you don't understand the why you solve by that way. We used the 5th edition until chapter 10, than we tried another book.
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In-Situ Spectroscopy in Heterogeneous Catalysis
Manufacturer: Wiley-VCH
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Binding: Hardcover
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ASIN: 3527302484 |
Book Description
"Not using in-situ methods to examine catalytic processes is like studying a life with access only to the prenatal and postmortem states." This quote from the world renowned specialist in the field of in situ methods, Gabor A. Somorjai, clearly emphasizes the importance of these techniques in understanding heterogeneous catalysis - a type of chemical reaction used nowadays for most chemically produced supplies and fuels. Yet the fundamental mechanisms are often still not completely understood.
Many of the leading scientists in the field have contributed to this book which provides an overview of the most varied spectroscopic and related methods for studying catalytic structures and their functions during a chemical reaction. While primarily written for users of these methods, this is also a valuable aid to interpreting the phenomena observed. Indispensable for everyone working in the field.
Book Description
Surface Enhanced Vibrational Spectroscopy (SEVS) has reached maturity as an analytical technique, but until now there has been no single work that describes the theory and experiments of SEVS. This book combines the two important techniques of surface-enhanced Raman scattering (SERS) and surface-enhanced infrared (SEIR) into one text that serves as the definitive resource on SEVS.
- Discusses both the theory and the applications of SEVS and provides an up-to-date study of the state of the art
- Offers interpretations of SEVS spectra for practicing analysts
- Discusses interpretation of SEVS spectra, which can often be very different to the non-enhanced spectrum - aids the practicing analyst
Customer Reviews:
A great addition to my reference library.......2007-09-01
Concise, comprehensive coverage of SERS, SEIRA, and single molecule SERS and SEIRA techniques, including theoretical background. Inspired me to continue my studies in this area, despite the often unruly nature of these systems. Lists many important references.
Average customer rating:
- From: Analysis, 1997
- A book you must have
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Reflection Electron Microscopy and Spectroscopy for Surface Analysis
Zhong Lin Wang
Manufacturer: Cambridge University Press
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ASIN: 0521482666 |
Book Description
This book is a comprehensive review of the theories, techniques and applications of reflection electron microscopy (REM), reflection high-energy electron diffraction (RHEED) and reflection electron energy-loss spectroscopy (REELS). The book is divided into three parts: diffraction, imaging and spectroscopy. The text is written to combine basic techniques with special applications, theories with experiments, and the basic physics with materials science, so that a full picture of RHEED and REM emerges. An entirely self-contained study, the book contains much invaluable reference material, including FORTRAN source codes for calculating crystal structures data and electron energy-loss spectra in different scattering geometries. This and many other features makes the book an important and timely addition to the materials science literature for researchers and graduate students in physics and materials science.
Customer Reviews:
From: Analysis, 1997.......2000-09-04
The book describes the analytical techniques based on electron diffraction, reflection and imaging in the TEM (and STEM) for the analysis of materials surfaces. As with most texts dealing with analytical techniques these days it is awash with acronyms and the ones representing the candidate methodologies are frequently encountered. These are RHEED (reflection high energy electron diffraction), REM (reflection electron microscopy), SREM (scanning REM) and REELS (reflection electron energy loss spectroscopy). Many others are included, but the author is considerate enough to define them all in the early pages of his book. The dust-cover notes state that this is 'an entirely self-contained study' in which the 'theories, techniques and applications of REM, RHEED and REELS are comprehensively reviewed'. Inspection of the text reveals that this is, indeed, the case, with three parts (logically Part A, Part B and Part C) of approximately equal length covering the three areas of reflection electron studies. This is preceded by a comprehensive review of the kinematical theory of electron diffraction. This chapter is a very helpful (and necessary) prelude to the rest of the book. It deals with kinematical scattering in the usual numerical manner but the associated text makes this chapter extremely readable. The main body of the text is written in an equally attractive style with the theory of the various topics being introduced alongside the experimental procedures involved. There are many applications of reflection electron microscopy and spectroscopy scattered throughout the book; although inmost cases they serve as illustrations of particular facets of the experimental procedures rather than points which emphasize the relative strengths of the candidate techniques. This is, however, a minor criticism, and the inclusion of examples of real micrographs, diffraction patterns and spectra throughout the text may provide some readers with much needed relief from the undoubted rigour of the theoretical treatments provided.
For those with a TEM background it represents, perhaps, the definitive text for reflection methods.
There are two particularly attractive aspects of this book to be found in the closing pages. The first is an extensive set (ten) of appendices which contain much useful data along with five FORTRAM programs for interpreting spectra and modeling electron beam/specimen interaction. These have presumably been widely tested in the author's laboratory and their inclusion here is to be welcomed. The other feature, warmly welcomed by this reviewer, is the inclusion of a separate index of the materials used to illustrate the various facets of the reflection techniques. Also included as an Appendix is a chronological bibliography of REM, SREM and REELS covering the years 1975-1995. RHEED is presumably excluded as it is the most senior, and widely used, of the methods considered. This book is not one for those with a peripheral interest in RHEED, REM, SREM and REELS. Referring once again to the cover notes it is offered as an 'ideal guide for scientists and graduate students working on quantitative surface structure characterization using reflection electron techniques' and there is no doubt that this target audience will appreciate the publication of such a concise, authoritative and well written text in their chosen area of endeavor. For those with a TEM background it represents, perhaps, the definitive text for reflection methods and provides all the theoretical information necessary for a thorough appreciation of these techniques. At such a reasonable price for a very specialist text one would hope that it will soon find a place on the bookshelf of every electron microscopy unit with a practical need (or even aspirations) to carry out surface structure determination in the TEM or STEM. For those with a need for such a text this book fulfills all the claims made on its behalf. Dr. Wang is to be congratulated on writing a very accessible text. The book is thoroughly recommended.
A book you must have.......2000-09-04
"It contains a lot of illustrations and excellent images and a good balance of theory and experimental techniques... it is a book that any materials science or physics libraries should be holding"
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Surface-Enhanced Raman Scattering: Physics and Applications (Topics in Applied Physics)
Manufacturer: Springer
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Modern Raman Spectroscopy: A Practical Approach
ASIN: 3540335668 |
Book Description
Almost 30 years after the first reports on surface-enhanced Raman signals, the phenomenon of surface-enhanced Raman scattering (SERS) is now well established. Yet, explaining the enhancement of a spectroscopic signal by fouteen orders of magnitude continues to attract the attention of physicists and chemists alike. And, at the same time and rapidly growing, SERS is becoming a very useful spectroscopic tool with exciting applications in many fields. SERS gained particular interest after single-molecule Raman spectroscopy had been demonstrated. This bookl summarizes and discusses present theoretical approaches that explain the phenomenon of SERS and reports on new and exciting experiments and applications of the fascinating spectroscopic effect.
Book Description
Current developments in optical technologies are being directed toward nanoscale devices with subwavelength dimensions, in which photons are manipulated on the nanoscale. Although light is clearly the fastest means to send information to and from the nanoscale, there is a fundamental incompatibility between light at the microscale and devices and processes at the nanoscale. Nanostructured metals which support surface plasmon modes can concentrate electromagnetic (EM) fields to a small fraction of a wavelength while enhancing local field strengths by several orders of magnitude. For this reason, plasmonic nanostructures can serve as optical couplers across the nanomicro interface: metaldielectric and metalsemiconductor nanostructures can act as optical nanoantennae and enhance light matter coupling in nanoscale devices. This book describes how one can fully integrate plasmonic nanostructures into dielectric, semiconductor, and molecular photonic devices, for guiding photons across the nanomicro interface and for detecting molecules with unsurpassed sensitivity.
·Nanophotonics and Nanoplasmonics
·Metamaterials and negative-index materials
·Plasmon-enhanced sensing and spectroscopy
·Imaging and sensing on the nanoscale
·Metal Optics
Book Description
Extensively revised and updated with additional material included in existing chapters and new material on angle resolved XPS, surface engineering and complimentary methods.
* Includes an accessible introduction to the key spectroscopic techniques in surface analysis.
* Provides descriptions of latest instruments and techniques.
* Includes a detailed glossary of key surface analysis terms.
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Vibrational Spectroscopy of Molecules and Macromolecules on Surfaces
Marek W. Urban
Manufacturer: Wiley-Interscience
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Binding: Hardcover
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ASIN: 0471528153 |
Book Description
Bridges the gap between basic principles of vibrational spectroscopy covering its practical aspects. Emphasizes structure-property relations on surfaces and interfaces. Normal vibrations, adsorption of hydrocarbons or metals and metal oxides, polymers on surfaces, techniques, banding, new materials, adhesion and surfaces of catalysts are among the subjects discussed.
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Radiative Decay Engineering (Topics in Fluorescence Spectroscopy)
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ASIN: 0387226621 |
Book Description
During recent years our enthusiasm for Radiative Decay Engineering (RDE) has continually increased. Many of the early predictions have been confirmed experimentally. We see numerous applications for RDE in biotechnology, clinical assays and analytical chemistry. While implementation of RDE is relatively simple, understanding the principles of RDE is difficult. The concepts are widely distributed in the optics and chemical physics literature, often described in terms difficult to understand by biophysical scientists.
RDE includes chapters from the experts who have studied metal particle optics and fluorophore-metal interactions. This collection describes the fundamental principles for the widespread use of radiative decay engineering in the biological sciences and nanotechnology.
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Electron Energy Loss Spectroscopy and Surface Vibrations
Harald Ibach
Manufacturer: Academic Press
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ASIN: 0123693500 |
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