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[【物理化学】] Introduction to Surface and Thin Film Processes

本主题由 樱桃果果 于 2008-5-3 21:45 设置高亮

Introduction to Surface and Thin Film Processes

Introduction to Surface and Thin Film Processes

Introduction to Surface and Thin Film Processes
By John A. Venables

Publisher: Cambridge University Press
Number Of Pages: 372
Publication Date: 2000-01-15
ISBN-10 / ASIN: 0521624606
ISBN-13 / EAN: 9780521624602
Binding: Hardcover

Surface and thin film processes are crucial in understanding current and future electronic, magnetic, optical and chemical devices. This book covers the experimental and theoretical understanding of surface and thin film processes. It presents a unique description of surface processes in absorption and crystal growth, including bonding in metals and semiconductors. Venables, an international expert on the subject, covers practical experimental design, sample preparation, and analytical techniques, including detailed discussions of Auger electron spectroscopy and microscopy. Throughout, he emphasizes thermodynamic and kinetic models of structure. This volume provides extensive leads into practical and research literature, as well as links to resources on the World Wide Web. Each chapter contains problems that will help develop awareness of the subject and the methods used. An ideal graduate textbook, this book will also be useful as a sourcebook for graduate students, researchers and practitioners in physics, chemistry, materials science and engineering.


This book covers the experimental and theoretical understanding of surface and thin film processes. It presents a unique description of surface processes in adsorption and crystal growth, including bonding in metals and semiconductors. Emphasis is placed on the strong link between science and technology in the description of, and research for, new devices based on thin film and surface science. Practical experimental design, sample preparation and analytical techniques are covered, including detailed discussions of Auger electron spectroscopy and microscopy. Thermodynamic and kinetic models of structure are emphasised throughout. The book provides extensive leads into practical and research literature, as well as resources on the World Wide Web (see http://venables.asu.edu/book). Each chapter contains problems which aim to develop awareness of the subject and the methods used. Aimed as a graduate textbook, this book will also be useful as a sourcebook for graduate students, researchers and practitioners in physics, chemistry, materials science and engineering.

Summary: Scant physical explanation.
Rating: 3

Venables' text fairly thoroughly covers modern surface science techniques. He summarizes thirty years of fundamental research and hits on modern interest areas. However, for a text labeled as an introduction, very few introductory ideas are adequately explained. Where are the energy level diagrams? Energies associated with various processes are arbitrarily assigned to be positive or negative, and reference energies are never mentioned. Attempts to solve chapter ending problems invariably lead to frustration, as the questions are vague, and the suggested results are impossible to obtain without consulting other, more detailed texts like Dejenqueres and Spanjaard. The sections on crystal growth are impenetrable unless one reads the referenced papers, but this is inexcusable for an introductory text. A more suitable title for the book would be: "A Survey of Surface Science," or "Collected Citations of Surface Science Research: 1970-2000"

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