</header><div itemprop="description" class="collapsable text"><P><EM>Nanomaterials Characterization Techniques, Volume Two</EM>, part of an ongoing series, offers a detailed analysis of the different types of spectroscopic methods currently being used in nanocharacterization. These include, for exam
Microscopy Methods in Nanomaterials Characterization. A volume in Micro and Nano Technologies
β Scribed by Sabu Thomas, Raju Thomas, Ajesh K. Zachariah and Raghvendra Kumar Mishra (Eds.)
- Publisher
- Elsevier
- Year
- 2017
- Tongue
- English
- Leaves
- 411
- Edition
- 1st Edition
- Category
- Library
No coin nor oath required. For personal study only.
β¦ Synopsis
Microscopy Methods in Nanomaterials Characterization fills an important gap in the literature with a detailed look at microscopic and X-ray based characterization of nanomaterials. These microscopic techniques are used for the determination of surface morphology and the dispersion characteristics of nanomaterials.
This book deals with the detailed discussion of these aspects, and will provide the reader with a fundamental understanding of morphological tools, such as instrumentation, sample preparation and different kinds of analyses, etc. In addition, it covers the latest developments and trends morphological characterization using a variety of microscopes.
Materials scientists, materials engineers and scientists in related disciplines, including chemistry and physics, will find this to be a detailed, method-orientated guide to microscopy methods of nanocharacterization.
β¦ Table of Contents
Content:
Front Matter,Copyright,List of Contributors,Editor BiographiesEntitled to full textChapter 1 - Scanning Electron Microscopy, ESEM, and X-ray Microanalysis, Pages 1-30, Sven Henning, Rameshwar Adhikari
Chapter 2 - Synthesis of Scanning Electron Microscopy Images of Nanostructures by High-Performance Monte Carlo Modeling, Pages 31-83, Mauro Ciappa
Chapter 3 - Scanning Electron Microscopy Under Gaseous Environment, Pages 85-103, Zahava Barkay
Chapter 4 - Transmission Electron Microscopy of Nanostructures, Pages 105-134, Thomas Walther
Chapter 5 - Plasmonic and Nonplasmonic Characterization of Nanomaterials, Pages 135-163, Darshan B. Desai
Chapter 6 - Characterization of Materials, Nanomaterials, and Thin Films by Nanoindentation, Pages 165-239, Zhong Hu
Chapter 7 - Superresolution Optical Microscopy, Pages 241-291, Yue Fang, Yujia Huang, Shaocong Liu, Cuifang Kuang, Xu Liu
Chapter 8 - X-ray Microanalysis and Electron Energy Loss Spectroscopy (EELS), Pages 293-311, Gurram Giridhar, R.K.N.R. Manepalli, Gudimalla AppaRao
Chapter 9 - Wide-Angle X-ray Diffraction (WXRD): Technique for Characterization of Nanomaterials and Polymer Nanocomposites, Pages 313-337, Anjali Bishnoi, Sunil Kumar, Nirav Joshi
Chapter 10 - Small-Angle Neutron Scattering (SANS), Pages 339-361, Aristeidis Papagiannopoulos
Chapter 11 - Auger Electron Spectroscopy, Pages 363-381, Arkady M. Ilyin
Chapter 12 - Energy-Dispersive X-ray Spectroscopy Techniques for Nanomaterial, Pages 383-405, Raghvendra Kumar Mishra, Ajesh K. Zachariah, Sabu Thomas
Index, Pages 407-414
β¦ Subjects
Home;Books & Journals;Materials Science;Materials Science (General);Materials Analysis and Characterization;Microscopy Methods in Nanomaterials Characterization
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