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Material Research in Atomic Scale by Moessbauer Spectroscopy (Hardcover, 2003 ed.): Miroslav Mashlan, Marcel Miglierini, Peter... Material Research in Atomic Scale by Moessbauer Spectroscopy (Hardcover, 2003 ed.)
Miroslav Mashlan, Marcel Miglierini, Peter Schaaf
R1,737 Discovery Miles 17 370 Ships in 10 - 15 working days

Mossbauer spectroscopy is uniquely able to probe hyperfine interactions by looking at the short-range order of resonant atoms. Materials containing an appropriate isotope as one of their constituent atoms, such as iron or tin, are readily investigated. But even materials that do not contain Mossbauer-active atoms can be investigated if the probe atoms are incorporated in minor quantities (ca. 0.1 at.-%) to act as molecular-level indicators.

These 35 papers collected here represent a state-of-the-art description of Mossbauer spectroscopy techniques applied to advanced materials. The topics covered comprise investigations of nanomaterials, nanoparticles, and quasicrystals, artificially structured materials as well as applications of Mossbauer spectroscopy in chemistry, mineralogy and metallurgy. The main aim of is the dissemination of information on research and recent developments of the method in materials science as obtained in leading Mossbauer laboratories. "

Material Research in Atomic Scale by Moessbauer Spectroscopy (Paperback, Softcover reprint of the original 1st ed. 2003):... Material Research in Atomic Scale by Moessbauer Spectroscopy (Paperback, Softcover reprint of the original 1st ed. 2003)
Miroslav Mashlan, Marcel Miglierini, Peter Schaaf
R1,660 Discovery Miles 16 600 Ships in 10 - 15 working days

Mossbauer spectroscopy is uniquely able to probe hyperfine interactions by looking at the short-range order of resonant atoms. Materials containing an appropriate isotope as one of their constituent atoms, such as iron or tin, are readily investigated. But even materials that do not contain Mossbauer-active atoms can be investigated if the probe atoms are incorporated in minor quantities (ca. 0.1 at.-%) to act as molecular-level indicators.

These 35 papers collected here represent a state-of-the-art description of Mossbauer spectroscopy techniques applied to advanced materials. The topics covered comprise investigations of nanomaterials, nanoparticles, and quasicrystals, artificially structured materials as well as applications of Mossbauer spectroscopy in chemistry, mineralogy and metallurgy. The main aim of is the dissemination of information on research and recent developments of the method in materials science as obtained in leading Mossbauer laboratories. "

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