Diffraction and microscopic methods and instruments for the analysis of nanoparticles and nanomaterials

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The book "Difractional and microscopic methods and devices for analysis of nanoparticles and nanomaterials" by Vekilov G. In. , Ivanova A. N. Yagodkina Yu . D. is an indispensable guide in the world of nanotechnology, designed for scientists, engineers and students seeking to better understand the structure and properties of nanomaterials. If you are interested in modern methods of research at the nanoscale, this book will become your reliable assistant, revealing the subtleties and nuances of analyzing nanoparticles and nanomaterials using diffraction and microscopic technologies. The focus of this book is a set of methods that allow you to look into the smallest structure of a substance, identify its internal organization and determine key parameters. The authors analyze in detail the principles of X-ray diffraction, electron microscopes, atomic force and scanning probe methods, as well as other modern devices that today underlie nanoscience. In the book, not only theoretical foundations, but also practical recommendations for preparing samples, setting up equipment and interpreting the received data . This makes the publication a valuable resource for those engaged in research activities or working in the development of new nanomaterials. The book "Difractional and microscopic methods and devices for the analysis of nanoparticles and nanomaterials" is especially relevant for specialists engaged in the creation of new materials for electronics, medicine, energy and other advanced industries. It will help to understand how modern devices allow us to identify the smallest structural features, determine the size of nanoparticles, their aggregate state and orientation, as well as explore the interactions within nanomaterials. Thanks to clear explanations and rich illustrative material, the book turns into a handbook for those who want to master the skills of accurate analysis and learn to correctly interpret the results. The authors are recognized experts in the field of nanotechnology and materials science, their style of presentation is clear, logical and accessible. In their other works, they have already established themselves as authors capable of conveying complex scientific ideas to a wide audience without burdening the text with excessive terminology. Their approach to the presentation of the material makes the book "Difractional and microscopic methods and devices for the analysis of nanoparticles and nanomaterials" especially attractive to students. Post-graduate students and young scientists , who are just starting out in nanoscience, as well as for experienced researchers, who want to expand their knowledge and master new methods of analysis. This book is not just a collection of technical descriptions of devices, it immerses the reader in the exciting world of nanostructures, revealing the secrets of their internal organization and behavior. It raises important topics related to the accuracy and reliability of scientific data, standardization issues and the prospects for the development of analysis methods. In today's world, where nanotechnology plays a key role in creating innovative products, this publication is deservedly considered one of the best sources of information that can help understand complex processes and learn how to apply best practices in practice. If you are looking for a book that combines theory and practice, reveals the secrets of modern instruments and methods for the study of nanoparticles and nanomaterials, - "Difractional and microscopic methods and devices for the analysis of nanoparticles and nanomaterials" In. Vekilova, A. N. Ivanova and Y. D. Yagodkina will become your reliable companion on the way to new knowledge and discoveries in the field of nanoscience This publication is a real key to understanding the smallest structures that shape the future of technology and innovation.
LF/665535597/R
Data sheet
- Name of the Author
- А. Н.
Векилова
Г. В.
Иванов
Ю. Д.
Ягодкин - Language
- Russian