Advanced Synchrotron Radiation Techniques for Nanostructured Materials

Advanced Synchrotron Radiation Techniques for Nanostructured Materials PDF Author: Chiara Battocchio
Publisher: MDPI
ISBN: 3039216805
Category : Science
Languages : en
Pages : 138

Book Description
Nanostructured materials exploit physical phenomena and mechanisms that cannot be derived by simply scaling down the associated bulk structures and phenomena; furthermore, new quantum effects come into play in nanosystems. The exploitation of these emerging nanoscale interactions prompts the innovative design of nanomaterials. Understanding the behavior of materials on all length scales—from the nanostructure up to the macroscopic response—is a critical challenge for materials science. Modern analytical technologies based on synchrotron radiation (SR) allow for the non-destructive investigation of the chemical, electronic, and magnetic structure of materials in any environment. SR facilities have developed revolutionary new ideas and experimental setups for characterizing nanomaterials, involving spectroscopy, diffraction, scatterings, microscopy, tomography, and all kinds of highly sophisticated combinations of such investigation techniques. This book is a collection of contributions addressing several aspects of synchrotron radiation as applied to the investigation of chemical, electronic, and magnetic structure of nanostructured materials. The results reported here provide not only an interesting and multidisciplinary overview of the chemicophysical investigations of nanostructured materials carried out by state-of-the-art SR-induced techniques, but also an exciting glance into the future perspectives of nanomaterial characterization methods.

Advanced Synchrotron Radiation Techniques for Nanostructured Materials

Advanced Synchrotron Radiation Techniques for Nanostructured Materials PDF Author: Chiara Battocchio
Publisher:
ISBN: 9783039216819
Category : Electronic books
Languages : en
Pages : 1

Book Description
Nanostructured materials exploit physical phenomena and mechanisms that cannot be derived by simply scaling down the associated bulk structures and phenomena; furthermore, new quantum effects come into play in nanosystems. The exploitation of these emerging nanoscale interactions prompts the innovative design of nanomaterials. Understanding the behavior of materials on all length scales-from the nanostructure up to the macroscopic response-is a critical challenge for materials science. Modern analytical technologies based on synchrotron radiation (SR) allow for the non-destructive investigation of the chemical, electronic, and magnetic structure of materials in any environment. SR facilities have developed revolutionary new ideas and experimental setups for characterizing nanomaterials, involving spectroscopy, diffraction, scatterings, microscopy, tomography, and all kinds of highly sophisticated combinations of such investigation techniques. This book is a collection of contributions addressing several aspects of synchrotron radiation as applied to the investigation of chemical, electronic, and magnetic structure of nanostructured materials. The results reported here provide not only an interesting and multidisciplinary overview of the chemicophysical investigations of nanostructured materials carried out by state-of-the-art SR-induced techniques, but also an exciting glance into the future perspectives of nanomaterial characterization methods.

Synchrotron Radiation in Materials Science

Synchrotron Radiation in Materials Science PDF Author: Chunhai Fan
Publisher: John Wiley & Sons
ISBN: 3527339868
Category : Technology & Engineering
Languages : en
Pages : 846

Book Description
Meeting the long-felt need for in-depth information on one of the most advanced material characterization methods, a top team of editors and authors from highly prestigious facilities and institutions covers a range of synchrotron techniques that have proven useful for materials research. Following an introduction to synchrotron radiation and its sources, the second part goes on to describe the various techniques that benefit from this especially bright light, including X-ray absorption, diffraction, scattering, imaging, and lithography. The thrid and final part provides an overview of the applications of synchrotron radiation in materials science. bridging the gap between specialists in synchrotron research and material scientists, this is a unique and indispensable resource for academic and industrial researchers alike.

Advanced Characterization of Nanostructured Materials

Advanced Characterization of Nanostructured Materials PDF Author: Sunil K. Sinha
Publisher:
ISBN: 9789811231506
Category : Nanostructured materials
Languages : en
Pages : 0

Book Description
Advanced Characterization of Nanostructured Materials -- Probing the Structure and Dynamics with Synchrotron X-Rays and Neutrons is a collection of chapters which review the characterization of the structure and internal dynamics of a wide variety of nanostructured materials using various synchrotron X-ray and neutron scattering techniques. It is intended for graduate students and researchers who might be interested in learning about and applying these methods. The authors are well-known practitioners in their fields of research who provide detailed and authoritative accounts of how these techniques have been applied to study systems ranging from thin films and monolayers on solid surfaces and at liquid-air, liquid-liquid and solid-liquid interfaces; nanostructured composite materials; battery materials, and catalytic materials. While there have been a great many books published on nanoscience, there are relatively few that have discussed in one volume detailed synchrotron X-ray and neutron methods for advanced characterization of nanomaterials in thin films, composite materials, catalytic and battery materials and at interfaces. This book should provide an incentive and a reference for researchers in nanomaterials for using these techniques as a powerful way to characterize their samples. It should also help to popularize the use of synchrotron and neutron facilities by the nanoscience community.

Phase Differentiation and Characterization of Nanostructured Composites by Synchrotron Radiation Techniques

Phase Differentiation and Characterization of Nanostructured Composites by Synchrotron Radiation Techniques PDF Author: Y. K. Hwu
Publisher:
ISBN:
Category :
Languages : en
Pages : 12

Book Description
The complexity of nanostructured materials presents challenging difficulties in characterization using conventional techniques. For example, conventional x-ray diffraction may not provide accurate information on the structure (solid solution or phase separation) of nanostructured materials. Complementary advanced characterization methods are often required in the detailed understanding of structures. In this paper we report our work on characterization of two nanostructured systems, namely, AgNi powder and NiCo films, using synchrotron radiation techniques of x-ray diffraction, anomalous x-ray scattering and x-ray absorption spectroscopy.

Neutrons and Synchrotron Radiation in Engineering Materials Science

Neutrons and Synchrotron Radiation in Engineering Materials Science PDF Author: Walter Reimers
Publisher: John Wiley & Sons
ISBN: 3527621938
Category : Technology & Engineering
Languages : en
Pages : 462

Book Description
Besides its coverage of the four important aspects of synchrotron sources, materials and material processes, measuring techniques, and applications, this ready reference presents both important method types: diffraction and tomography. Following an introduction, a general section leads on to methods, while further sections are devoted to emerging methods and industrial applications. In this way, the text provides new users of large-scale facilities with easy access to an understanding of both the methods and opportunities offered by different sources and instruments.

Synchrotron Radiation in Materials Science

Synchrotron Radiation in Materials Science PDF Author: Rogério Magalhaes-Paniago
Publisher: American Institute of Physics
ISBN:
Category : Science
Languages : en
Pages : 228

Book Description
This conference brings together leading edge researchers from around the world and is a celebration of the increasingly important relationship between materials science and synchrotron radiation research. Special attention was given to the contribution that Synchrotron Radiation techniques have given to unsolved problems in Materials Science. The main organizer of SRMS-6 was the Brazilian Synchrotron Laboratory, with support from several Brazilian and Latin-American Agencies and Universities. The main topical areas of this conference series are, Archaeological Materials, Catalysts and clusters, Complex oxides, Data-storage and Engineering materials, Films, Surfaces and Interfaces, Geo-physical and Electronic materials, Glasses and Ceramics, Liquids, Magnetism, Materials under Extreme conditions (high pressure, etc.), Metals and Alloys, Metamaterials, Molecular electronics, Multiferroics, Nanostructured materials and Self-assembly, Polymers and Biomaterials, Photo materials, Nanofocus techniques, Strongly correlated materials, Superconducting materials, Industrial use of SR, Instrumentation/Recent Developments.

Applications of Synchrotron Radiation Techniques to Materials Science IV: Volume 678

Applications of Synchrotron Radiation Techniques to Materials Science IV: Volume 678 PDF Author: P. G. Allen
Publisher: Cambridge University Press
ISBN: 9781558996144
Category : Technology & Engineering
Languages : en
Pages : 224

Book Description
Much like earlier books in the series, this collection of papers, first published in 2001, brings together the materials science community and the characterization techniques that use synchrotron radiation. Surfaces, interfaces, electronic materials, thin films, carbides, polymers and alloys are all addressed. And while the editors did not anticipate that the cluster of papers treating cementitious materials would necessitate a separate section, it is interesting to see the application of cutting-edge techniques to Portland cement, a very complex materials system long used in engineering structures. Topics include: X-ray diffraction - structures and transformations; X-ray diffraction - stress, strain and texture; microtomography and microdiffraction; SR methods applied to cementitious materials; magnetic materials; X-ray absorption and photoemission; and X-ray scattering and interfaces.

Applications of Synchrotron Radiation Techniques to Materials Science IV: Volume 524

Applications of Synchrotron Radiation Techniques to Materials Science IV: Volume 524 PDF Author: Susan M. Mini
Publisher:
ISBN:
Category : Technology & Engineering
Languages : en
Pages : 408

Book Description
The 57 papers update the status of characterization techniques that use synchrotron radiation since the previous symposium on the subject in the spring of 1996. The techniques considered include X-ray absorption and scattering, imaging, tomography, microscopy, and topographic methods. Among the materials are surfaces, interfaces, electronic materials, metal oxides, solar cells, thin films, carbides, polymers, alloys, nanoparticles, and graphitic materials. Some of the papers are doubled spaced. Annotation copyrighted by Book News, Inc., Portland, OR

Synchrotron Radiation Techniques in Industrial, Chemical, and Materials Science

Synchrotron Radiation Techniques in Industrial, Chemical, and Materials Science PDF Author: Kevin L. D'Amico
Publisher: Springer Science & Business Media
ISBN: 1461558379
Category : Science
Languages : en
Pages : 260

Book Description
The individual papers that comprise this monograph are derived from two American Chemical Society (ACS) Fall National Meetings that focused on the current uses of synchrotron radiation (SR) research techniques. The first Symposium was held in Washington, DC, in August 1994, and the second convened in Chicago, IL, in August 1995. The intent of these symposia was to present a broad overview of several current topics in industrial, chemical, and materials-based SR research to a chemically inclined audience. The SR techniques covered were divided roughly into the three general fields of industrial, chemical, and materials science for this purpose. Included within these four categories are environmental, geologic, atomic/molecular, analytical, solid state physics, surface science, and biological applications of SR. There is little doubt that structural biology and environmental science are the largest growth areas in SR research as this monograph goes to press. The spirit of these symposia was to bring together the expert synchrotron radiation user with new and potential users of SR techniques. There are now a preponderance of particle storage rings, located throughout the world, devoted exclusively to the production of SR. There have been great improvements in the particle accelerators and storage rings from which SR emanates. These newest third generation SR sources are the result of the successful collaboration between SR users and accelerator physicists which has made a reality out of experiments never before possible.