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Author: S. Cohen Publisher: Springer Science & Business Media ISBN: 1461586879 Category : Science Languages : en Pages : 258
Book Description
This book is for the most part made up of the invited papers presented at the International Conference on Applica tions of the Kdssbauer effect, held at Aye1eth Hashahar, Israel, in August 1972. The purpose of the conference was to review perspec tives in MHssbauer spectroscopy from the point of view of applications in various fields of science - mainly physics, chemistry, and biology. It was hoped that the bringing together of scientists who work in different disciplines but use a common tool would encourage interdisciplinary re search and widen the horizon of the individual researcher. Both these features have been an important and unique characteristic of Kdssbauer research in the past decade. Accordingly, the main papers were presented in the following areas: magnetic properties of solids, applications to in organic chemistry, biochemical studies, amorphous systems, metal alloys, advances in high-resolution studies, and the new techniques for studying recoil-free spectra from isolated atoms in inert materials. A special panel discussion was devoted to the subject of phase transitions. Recent years have witnessed a rapid growth in the use of X-ray photoelec tron spectroscopy for the study of the physics and chemistry of solids. A report on this area of research and its rela tion to Kdssbauer studies has been included.
Author: Israel) International Conference on Applications of the Mossbauer Effect (1972 : Ayeleth Hashahar Publisher: ISBN: Category : Mössbauer spectroscopy Languages : en Pages : 0
Author: Yutaka Yoshida Publisher: Springer Nature ISBN: 9811594228 Category : Science Languages : en Pages : 533
Book Description
This book presents an overview of the latest Mössbauer spectroscopy research. It sheds light on various cutting-edge research subjects: (i) nuclear resonance scattering experiments implemented at synchrotron radiation facilities, e.g., ESRF, DESY and Spring-8; (ii) multidisciplinary materials research related to chemistry, biology, geoscience, molecular magnetism of metal complexes, batteries, and magnetism; (iii) novel imaging techniques based on probing diffusion in solids using Mössbauer spectroscopy. The first three chapters introduce recent research on modern Mössbauer spectroscopy, including nuclear resonant scattering experiments and development of related techniques at synchrotron accelerator facilities. Chapters 4 and 5 then demonstrate the applications of such pioneering techniques to chemistry, biology and geoscience. Chapters 6 and 7 describe the applications to new functional materials, i.e., metal complexes and Li- and Na-ion batteries, while the final two chapters are devoted to two important measuring techniques: Mössbauer spectroscopy under external magnetic fields, and microscopic Mössbauer techniques on diffusion in solids, which are expected to play an essential role in the investigation and characterization of magnetic structures and microstructures in materials. The cutting-edge content provides readers with quick updates on the latest research topics in the field, while the tutorial-style descriptions allow readers unfamiliar with Mössbauer spectroscopy to learn and implement the techniques. As such, the book is especially useful for advanced undergraduate and early graduate students who have recently been assigned to a laboratory.
Author: Marcel Miglierini Publisher: Springer Science & Business Media ISBN: 9401145482 Category : Technology & Engineering Languages : en Pages : 443
Book Description
Material science is one of the most evolving fields of human activities. Invention and consequent introduction of new materials for practical and/or technological purposes requires as complete knowledge of the physical, chemical, and structural properties as possible to ensure proper and optimal usage of their new features. In order to understand the macroscopic behaviour, one has to search for their origin on a microscopic level. A good deal of microscopic information can be obtained through hyperfine interactions. Mossbauer spectroscopy offers a unique possibility for hyperfine interaction studies via probing the nearest order of resonant atoms. Materials which contain the respective isotope as one of the constituent elements (e.g., iron, tin, ... ) but also those which even do not contain them can be investigated. In the latter case, the probe atoms are incorporated into the material of interest in minor quantities (ca. 0.1 at. %) to act as probes on a nuclear level. This Workshop has covered the most evolving topics in the field of Mossbauer spectroscopy applied to materials science. During four working days, SO participants from 19 countries discussed the following areas: Chemisliy, Mineralogy and Metallurgy, Artificia/~y Structured Materials, Nanosized Materials and Quasicrvstals. and Experimental Techniques and Data Processing. A total of 42 contributions (30 keynote talks) reviewed the current state of art of the method, its applications for technical purposes, as well as trends and perspectives. A total of 39 papers are included in the present volume. Applications in Chemisfr\'.
Author: N. N. Greenwood Publisher: Springer Science & Business Media ISBN: 9400956975 Category : Science Languages : en Pages : 668
Book Description
Rudolph Mossbauer discovered the phenomenon of recoil-free nuclear resonance fluorescence in 1957-58 and the first indications of hyperfine interactions in a chemical compound were obtained by Kistner and Sunyar in 1960. From these beginnings the technique of Mossbauer spectroscopy rapidly emerged and the astonishing versatility of this new technique soon led to its extensive application to a wide variety of chemical and solid-state problems. This book reviews the results obtained by Mossbauer spectroscopy during the past ten years in the belief that this will provide a firm basis for the continued development and application of the technique to new problems in the future. It has been our aim to write a unified and consistent treatment which firstly presents the basic principles underlying the phenomena involved, then outlines the experimental techniques used, and finally summarises the wealth of experimental and theoretical results which have been obtained. We have tried to give some feeling for the physical basis of the Mossbauer effect with out extensive use of mathematical formalism, and some appreciation of the experimental methods employed without embarking on a detailed discussion of electronics and instrumentation. However, full references to the original literature are provided and particular points can readily be pursued in more detail if required.