Details

Transmission Electron Energy Loss Spectrometry in Materials Science and the EELS Atlas


Transmission Electron Energy Loss Spectrometry in Materials Science and the EELS Atlas


2. Aufl.

von: Channing C. Ahn

171,99 €

Verlag: Wiley-VCH
Format: PDF
Veröffentl.: 06.03.2006
ISBN/EAN: 9783527604777
Sprache: englisch
Anzahl Seiten: 472

DRM-geschütztes eBook, Sie benötigen z.B. Adobe Digital Editions und eine Adobe ID zum Lesen.

Beschreibungen

This book/CD package provides a reference on electron energy loss spectrometry (EELS) with the transmission electron microscope, an established technique for chemical and structural analysis of thin specimens in a transmission electron microscope. Describing the issues of instrumentation, data acquisition, and data analysis, the authors apply this technique to several classes of materials, namely ceramics, metals, polymers, minerals, semiconductors, and magnetic materials. The accompanying CD-ROM consists of a compendium of experimental spectra.
Preface to the Second Edition. <p>Preface to the First Edition.</p> <p>Contributors.<br /> <br /> 1. Introduction (B. Fultz).<br /> <br /> 2. Experimental Techniques and Instrumentation (R. F. Egerton).<br /> <br /> 3. EELS Quantitative Analysis (R. D. Leapman).<br /> <br /> 4. Energy Loss Fine Structure (P. Rez).<br /> <br /> 5. Energy Filtered Diffraction (L. Reimer).<br /> <br /> 6. EFTEM Elemental Mapping in Materials Science (F. Hofer and P. Warbichler).<br /> <br /> 7. Probing Materials Chemistry Using ELNES (R. Brydson, H. Sauer and W. Engel).<br /> <br /> 8. Application of EELS to Ceramic and Catalysts (J. Bentley and J. Graetz).<br /> <br /> 9. EELS Analysis of the Electronic Structure and Microstructure of Metals (J. K. Okamoto, D. H. Pearson, A. Hightower, C. C. Ahn and B. Fultz).<br /> <br /> 10. Electron Energy Loss Studies in Semiconductors (P. E. Batson).<br /> <br /> 11. Electron Energy Loss Spectroscopy of Magnetic Materials (J. Dooley).<br /> <br /> 12. Electron Energy Loss Spectroscopy of Polymers (M. Libera and M. M. Disko).<br /> <br /> Index.<br /> </p>
“…will be an instant best-seller ni the energy loss community…” (<i>Ultramicroscopy</i>, Vol. 104, 2005)
<b>Channing C. Ahn</b> earned his PhD in Physics at the University of Bristol, UK, in 1986. He is presently a Professor at the California Institute of Technology.
Electron Energy Loss Spectrometry(EELS), a highly effective technique for materials microanalysis under the transmission electron microscope, has advanced tremendously in recent years with increasing promise for use with semiconductors and other high-tech materials. Now, the Second Edition of this volume - a leading reference on EELS applications that includes the valuable EELS Atlas database - sheds light on major innovations in instrumentation, techniques, and applications for this versatile spectroscopic method. <p>With many new chapters authored by respected materials scientists, the new edition of this respected reference encompasses both general principles of EELS and its uses with particular classes of materials - metals, ceramics, minerals, polymers, semiconductors, and magnetic materials. Highlights include:</p> <ul> <li> <div>CD-ROM with the EELS Atlas - a digital reference library of EELS spectra for almost all elements on the periodic table as well as many oxides and compounds</div> </li> <li> <div>CD-ROM also includes examples of energy-filtered images from a large range of materials</div> </li> <li>Contributions from leading authorities in materials science and engineering</li> <li> <div>Extensive new coverage of energy-filtered imaging</div> </li> <li> <div>Up-to-date coverage of high quantum efficiency parallel detection systems</div> </li> <li> <div>New treatment of advanced spectroscopic imaging techniques</div> </li> <li> <div>Extensive bibliography including relevant literature for each chapter</div> </li> </ul> <p>With strong emphasis on specific applications of EELS, the Second Edition of this highly regarded volume gives working scientists and students in materials science, engineering, solid-state physics and chemistry, and many associated fields a complete toolbox for utilizing EELS in their own research.</p>

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