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Advanced Biophysical Techniques for Polysaccharides Characterization

Advanced Biophysical Techniques for Polysaccharides Characterization
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Advanced Biophysical Techniques for Polysaccharides Characterization

by Nirmal Mazumder (Editor) 

Advanced Biophysical Techniques for Polysaccharides Characterization offers a detailed insight into the cutting-edge techniques available for the identification, quantification, characterization and structural analysis of polysaccharides. A wide range of techniques are covered, including scanning electron microscopy (SEM), atomic force microscopy (AFM), optical microscopy, non-linear optical microscopy and spectroscopic techniques like Fourier transform Infrared (FTIR), X ray diffraction, light scattering, and nuclear magnetic resonance (NMR). Dynamic Nuclear Polarization and TEM techniquesare also considered. Various polysaccharides are investigated along with their applications across a range of industries. Each chapter offers a detailed description of the techniques before delving into case studies covering the latest advances.

This book provides a one-stop solution to the latest advanced microscopic and spectroscopic techniques for investigating a range of important polysaccharides and is an ideal reference for researchers in the field of biophysics, molecular biology, biochemistry, pharmaceutics, food chemistry and related areas.

  • Covers a range of biophysical techniques for polysaccharide analysis, including NMR, Dynamic Nuclear Polarization, mass spectrometry approaches, X ray diffraction, light scattering, and TEM techniques
  • Investigates an array of polysaccharides such as glycogen, xanthan, hyaluronan, and more
  • Includes an introduction to the sources, types, and benefits of polysaccharide
  • Considers applications of polysaccharides in various industries, including biomedicine, pharmaceuticals, and the food industry
Year:
2024
Pages:
371
Language:
English
Format:
PDF
Size:
18 MB
ASIN:
B0D7C47PSK
ISBN-10:
0443140421, 044314043X
ISBN-13:
9780443140426, 978-0443140426, 978-0-443-14042-6, 9780443140433, 978-0443140433