Advanced Synchrotron Radiation Techniques for Nanostructured Materials

Advanced Synchrotron Radiation Techniques for Nanostructured Materials
Author :
Publisher : MDPI
Total Pages : 138
Release :
ISBN-10 : 9783039216802
ISBN-13 : 3039216805
Rating : 4/5 (805 Downloads)

Book Synopsis Advanced Synchrotron Radiation Techniques for Nanostructured Materials by : Chiara Battocchio

Download or read book Advanced Synchrotron Radiation Techniques for Nanostructured Materials written by Chiara Battocchio and published by MDPI. This book was released on 2019-10-29 with total page 138 pages. Available in PDF, EPUB and Kindle. Book excerpt: 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.


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