Cover for Organic Structure Determination Using 2-D NMR Spectroscopy

Organic Structure Determination Using 2-D NMR Spectroscopy

A Problem-Based Approach

Book • Second Edition2012

Author:

Jeffrey H. Simpson

Organic Structure Determination Using 2-D NMR Spectroscopy

A Problem-Based Approach

Book • Second Edition2012

 

Cover for Organic Structure Determination Using 2-D NMR Spectroscopy

Author:

Jeffrey H. Simpson

About the book

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Book description

Organic Structure Determination Using 2-D NMR Spectroscopy: A Problem-Based Approach, Second Edition, is a primary text for a course in two-dimensional (2-D) nuclear magnetic reson ... read full description

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  2. Book chapterNo access

    Chapter 1 - Introduction

    Pages 1-20

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    Chapter 2 - Instrumental Considerations

    Pages 21-57

  4. Book chapterNo access

    Chapter 3 - Data Collection, Processing, and Plotting

    Pages 59-100

  5. Book chapterNo access

    Chapter 4 - 1H and 13C Chemical Shifts

    Pages 101-112

  6. Book chapterNo access

    Chapter 5 - Symmetry and Topicity

    Pages 113-121

  7. Book chapterNo access

    Chapter 6 - Through-Bond Effects: Spin-Spin (J) Coupling

    Pages 123-168

  8. Book chapterNo access

    Chapter 7 - Through-Space Effects: The Nuclear Overhauser Effect (NOE)

    Pages 169-184

  9. Book chapterNo access

    Chapter 8 - Molecular Dynamics

    Pages 185-197

  10. Book chapterNo access

    Chapter 9 - Strategies for Assigning Resonances to Atoms within a Molecule

    Pages 199-221

  11. Book chapterNo access

    Chapter 10 - Strategies for Elucidating Unknown Molecular Structures

    Pages 223-236

  12. Book chapterNo access

    Chapter 11 - Simple Assignment Problems

    Pages 237-287

  13. Book chapterNo access

    Chapter 12 - Complex Assignment Problems

    Pages 289-340

  14. Book chapterNo access

    Chapter 13 - Simple Unknown Problems

    Pages 341-378

  15. Book chapterNo access

    Chapter 14 - Complex Unknown Problems

    Pages 379-426

  16. Book chapterNo access

    Chapter 15 - More Assignment Problems

    Pages 427-477

  17. Book chapterNo access

    Chapter 16 - More Unknown Problems

    Pages 479-525

  18. Book chapterNo access

    Glossary of Terms

    Pages 527-555

  19. Book chapterNo access

    Index

    Pages 557-574

About the book

Description

Organic Structure Determination Using 2-D NMR Spectroscopy: A Problem-Based Approach, Second Edition, is a primary text for a course in two-dimensional (2-D) nuclear magnetic resonance (NMR) techniques, with the goal to learn to identify organic molecular structure. It presents strategies for assigning resonances to known structures and for deducing structures of unknown organic molecules based on their NMR spectra.

The book begins with a discussion of the NMR technique, while subsequent chapters cover instrumental considerations; data collection, processing, and plotting; chemical shifts; symmetry and topicity; through-bond effects; and through-space effects. The book also covers molecular dynamics; strategies for assigning resonances to atoms within a molecule; strategies for elucidating unknown molecular structures; simple and complex assignment problems; and simple and complex unknown problems. Each chapter includes problems that will enable readers to test their understanding of the material discussed. The book contains 30 known and 30 unknown structure determination problems. It also features a supporting website from which instructors can download the structures of the unknowns in selected chapters, digital versions of all figures, and raw data sets for processing.

This book will stand as a single source to which instructors and students can go to obtain a comprehensive compendium of NMR problems of varying difficulty.

Organic Structure Determination Using 2-D NMR Spectroscopy: A Problem-Based Approach, Second Edition, is a primary text for a course in two-dimensional (2-D) nuclear magnetic resonance (NMR) techniques, with the goal to learn to identify organic molecular structure. It presents strategies for assigning resonances to known structures and for deducing structures of unknown organic molecules based on their NMR spectra.

The book begins with a discussion of the NMR technique, while subsequent chapters cover instrumental considerations; data collection, processing, and plotting; chemical shifts; symmetry and topicity; through-bond effects; and through-space effects. The book also covers molecular dynamics; strategies for assigning resonances to atoms within a molecule; strategies for elucidating unknown molecular structures; simple and complex assignment problems; and simple and complex unknown problems. Each chapter includes problems that will enable readers to test their understanding of the material discussed. The book contains 30 known and 30 unknown structure determination problems. It also features a supporting website from which instructors can download the structures of the unknowns in selected chapters, digital versions of all figures, and raw data sets for processing.

This book will stand as a single source to which instructors and students can go to obtain a comprehensive compendium of NMR problems of varying difficulty.

Key Features

  • Presents strategies for assigning resonances to known structures and for deducing structures of unknown organic molecules based on their NMR spectra
  • Contains 30 known and 30 unknown structure determination problems
  • Features a supporting website from which instructors can download the structures of the unknowns in selected chapters, digital versions of all figures, and raw data sets for processing
  • Presents strategies for assigning resonances to known structures and for deducing structures of unknown organic molecules based on their NMR spectra
  • Contains 30 known and 30 unknown structure determination problems
  • Features a supporting website from which instructors can download the structures of the unknowns in selected chapters, digital versions of all figures, and raw data sets for processing

Details

ISBN

978-0-12-384970-0

Language

English

Published

2012

Copyright

Copyright © 2012 Elsevier Inc. All rights reserved

Imprint

Academic Press

Authors

Jeffrey H. Simpson

Department of Chemistry, Massachusetts Institute of Technology, Cambridge, Massachusetts, USA