日本核磁気共鳴学会(編)/NMR分光法への実験的アプローチ 第2巻:生命科学・材料科学への応用(第2版)<br>Experimental Approaches of NMR Spectroscopy II〈Second Edition 2025〉 : Application to Life Science and Materials Science(2)

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日本核磁気共鳴学会(編)/NMR分光法への実験的アプローチ 第2巻:生命科学・材料科学への応用(第2版)
Experimental Approaches of NMR Spectroscopy II〈Second Edition 2025〉 : Application to Life Science and Materials Science(2)

  • 価格 ¥39,289 (本体¥35,718)
  • Springer(2025/03/14発売)
  • GWに本を読もう!Kinoppy 電子書籍・電子洋書 全点ポイント30倍キャンペーン(~5/6)
  • ポイント 10,710pt (実際に付与されるポイントはご注文内容確認画面でご確認下さい)
  • 言語:ENG
  • ISBN:9789819768295
  • eISBN:9789819768301

ファイル: /

Description

This book describes advanced developments in the methodology and applications of NMR spectroscopy in the life science and materials science fields. In this book, experts in the NMR field have contributed an exciting range of topics that cover recent advances in structural and dynamic aspects of material molecules such as silk fibrils, polymer materials and organic light-emitting diodes, and biological molecules such as natural products, glycoproteins, and ribonucleic acid (RNA). This book emphasizes the experimental details for new researchers to use NMR spectroscopy and pick up the potential of this technique. It is also designed for those who are involved in either developing the technique or expanding the NMR application field by applying them to specific samples. The Nuclear Magnetic Resonance Society of Japan has organized this book not only for NMR members of Japan but also for readers worldwide who are interested in using NMR spectroscopy extensively.

Table of Contents

NMR studies on silk materials.- NMR studies on polymer materials.- Solid-State 2H NMR studies of molecular motion in functional materials.- NMR Spectral Observations of the Gases in Polymer Materials.- NMR studies on natural product: Stereochemical determination and conformational analysis in solution and in membrane.- Technical basis for nuclear magnetic resonance approach for glycoproteins.-NMR studies on RNA.- NMR analysis of molecular complexity.- NMR of paramagnetic compounds.- NMR of quadrupole nuclei in organic compounds.- NMR of quadrupole nuclei, inorganic materials.- Protein ligand interactions as studied by NMR.- Protein structure and dynamics determination by residual anisotropic spin interactions.

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