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This book provides an excellent overview on the most recent results
on the industrial applications of Mossbauer spectroscopy attained
on the fields of nanotechnology, metallurgy, biotechnology and
pharmaceutical industry, applied mineralogy, energy production
industry (coal, oil, nuclear, solar, etc.), computer industry,
space technology, electronic and magnetic devices technology, ion
implantation technology, including topics like characterization of
novel construction materials, electronic components and magnetic
materials, composite materials, colloids, amorphous and nanophase
materials, small particles, coatings, interfaces, thin films and
multilayers, catalysis, corrosion, tribology, surface modification,
hydrogen storage, ball milling, radiation effects,
electrochemistry, batteries, etc. From the various reports a broad
overview emerges illustrating that the method can successfully be
applied in a wide variety of topics.
Unique and comprehensive overview of the versatile applications of Mössbauer spectroscopy in chemistry and related fields Mössbauer Spectroscopy provides a comprehensive overview of applications of Mössbauer spectroscopy in different areas of chemistry, focusing on the applications that are relevant in the field and without extensively delving on the technique and its developments,. The book shows the versatility of Mössbauer spectroscopy in finding useful information on electronic structure, structural insights, and solid-state effects of chemical systems. To aid in reader comprehension and accessibility, contents are well-structured and divided in five different sections: Molecular Electronics, Energy, Life Sciences and Sustainable Development, Computation of Mössbauer Parameters and Chemistry of Nanomaterials. Edited by prominent scientists in the field and authored by a group of international experts, Mössbauer Spectroscopy covers sample topics such as: Size effect of intercalated cation on the charge transfer phase transition and ferromagnetism for iron mixed-valence systems 57Fe and 119Sn-Mössbauer probes for multifunctional cyano-bridged compounds and metal atom dynamics of Fe and Sn organometallics Relevance of Mössbauer spectroscopy to study new materials for Li-ion batteries and reforming catalysis and Mössbauer spectroscopy of catalysts Fe-N-C catalysts prepared with structure foaming agents and non-carbonaceous templates, and redox reactions in gleysols and the related role of bacteria With comprehensive coverage of the developments in the technique, Mössbauer Spectroscopy is a beneficial resource for researchers, professionals, and academics in chemistry related fields, such as material science, nanotechnology, energy, environment, life sciences, and molecular electronics.
This book constitutes the refereed proceedings of the 29th Australasian Database Conference, ADC 2018, held in Gold Coast, QLD, Australia, in May 2018. The 23 full papers plus 6 short papers presented together with 3 demo papers were carefully reviewed and selected from 53 submissions. The Australasian Database Conference is an annual international forum for sharing the latest research advancements and novel applications of database systems, data-driven applications, and data analytics between researchers and practitioners from around the globe, particularly Australia and New Zealand.
This book provides an excellent overview on the most recent results
on the industrial applications of Mossbauer spectroscopy attained
on the fields of nanotechnology, metallurgy, biotechnology and
pharmaceutical industry, applied mineralogy, energy production
industry (coal, oil, nuclear, solar, etc.), computer industry,
space technology, electronic and magnetic devices technology, ion
implantation technology, including topics like characterization of
novel construction materials, electronic components and magnetic
materials, composite materials, colloids, amorphous and nanophase
materials, small particles, coatings, interfaces, thin films and
multilayers, catalysis, corrosion, tribology, surface modification,
hydrogen storage, ball milling, radiation effects,
electrochemistry, batteries, etc. From the various reports a broad
overview emerges illustrating that the method can successfully be
applied in a wide variety of topics.
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