</header><div itemprop="description" class="collapsable text"><P><EM>Microscopy Methods in Nanomaterials Characterization</EM> 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
Spectroscopic Methods for 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
- 424
- Edition
- 1st Edition
- Category
- Library
No coin nor oath required. For personal study only.
β¦ Synopsis
Nanomaterials Characterization Techniques, Volume Two, part of an ongoing series, offers a detailed analysis of the different types of spectroscopic methods currently being used in nanocharacterization. These include, for example, the Raman spectroscopic method for the characterization of carbon nanotubes (CNTs).
This book outlines the different kinds of spectroscopic tools being used for the characterization of nanomaterials and discusses under what conditions each should be used. The book is intended to cover all the major spectroscopic techniques for nanocharacterization, making it an important resource for both the academic community at the research level and the industrial community involved in nanomanufacturing.
β¦ Table of Contents
Content:
Front Matter,Copyright,List of Contributors,Editor BiographiesEntitled to full textChapter 1 - Atomic Force Microscopy as a Nanoanalytical Tool, Pages 1-17, Rameshwar Adhikari, Sven Henning, Goerg H. Michler
Chapter 2 - Electrochemical Characterization, Pages 19-54, Yogesh S. Choudhary, Lavanya Jothi, Gomathi Nageswaran
Chapter 3 - Ultraviolet Spectroscopy: A Facile Approach for the Characterization of Nanomaterials, Pages 55-72, Gejo George, Runcy Wilson, Jithin Joy
Chapter 4 - Fourier Transform Infrared Spectroscopy, Pages 73-93, Aastha Dutta
Chapter 5 - Raman Spectroscopy, Pages 95-127, Nebu John, Sony George
Chapter 6 - High-Vacuum Tip-Enhanced Raman Spectroscopy, Pages 129-140, Mengtao Sun
Chapter 7 - Confocal Raman Spectroscopy, Pages 141-161, Gurram Giridhar, R.R.K.N. Manepalli, Gudimamilla Apparao
Chapter 8 - Inductively Coupled Plasma Mass Spectrometry, Pages 163-194, Gomathi Nageswaran, Yogesh S. Choudhary, Saravanakumar Jagannathan
Chapter 9 - Electromagnetic Characterization of Materials by Vector Network Analyzer Experimental Setup, Pages 195-236, Davide Micheli, Roberto Pastore, Antonio Vricella, Andrea Delfini, Mario Marchetti, Fabio Santoni
Chapter 10 - Dielectric Spectroscopy, Pages 237-299, Kalim Deshmukh, Sowmya Sankaran, Basheer Ahamed, Kishor K. Sadasivuni, Khadheer S.K. Pasha, Deepalekshmi Ponnamma, P.S. Rama Sreekanth, Kuppanna Chidambaram
Chapter 11 - Dielectric and Magnetic Loss Behavior of Nanooxides, Pages 301-319, Shaohua Qu, Guanglei Wu, Jianwu Fang, Duyang Zang, Hui Xing, Liuding Wang, Hongjing Wu
Chapter 12 - MΓΆssbauer Spectroscopy: Basic Principles and Practical Guide to Exotic MΓΆssbauer Isotopes, Pages 321-367, Marta Marszalek
Chapter 13 - Nuclear Magnetic Resonance Spectroscopy, Pages 369-415, Raghvendra Kumar Mishra, Jayesh Cherusseri, Anjali Bishnoi, Sabu Thomas
Index, Pages 417-424
β¦ Subjects
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