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A01=A. M. Magill
A01=H. L. Li
A01=L. D. Field
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Author_H. L. Li
Author_L. D. Field
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Organic Structures from 2D NMR Spectra

English

By (author): A. M. Magill H. L. Li L. D. Field

The derivation of structural information from spectroscopic data is now an integral part of organic chemistry courses at all Universities.  Over recent years, a number of powerful two-dimensional NMR techniques (e.g. HSQC, HMBC, TOCSY, COSY and NOESY) have been developed and these have vastly expanded the amount of structural information that can be obtained by NMR spectroscopy.  Improvements in NMR instrumentation now mean that 2D NMR spectra are routinely (and sometimes automatically) acquired during the identification and characterisation of organic compounds.

Organic Structures from 2D NMR Spectra is a carefully chosen set of more than 60 structural problems employing 2D-NMR spectroscopy.  The problems are graded to develop and consolidate a students understanding of 2D NMR spectroscopy.  There are many easy problems at the beginning of the collection, to build confidence and demonstrate the basic principles from which structural information can be extracted using 2D NMR. The accompanying text is very descriptive and focussed on explaining the underlying theory at the most appropriate level to sufficiently tackle the problems.

Organic Structures from 2D NMR Spectra

  • Is a graded series of about 60 problems in 2D NMR spectroscopy that assumes a basic knowledge of organic chemistry and a basic knowledge of one-dimensional NMR spectroscopy
  • Incorporates the basic theory behind 2D NMR and those common 2D NMR experiments that have proved most useful in solving structural problems in organic chemistry
  • Focuses on the most common 2D NMR techniques including COSY, NOESY, HMBC, TOCSY, CH-Correlation and multiplicity-edited C-H Correlation.
  • Incorporates several examples containing the heteronuclei 31P, 15N and 19F

Organic Structures from 2D NMR Spectra is a logical follow-on from the highly successful Organic Structures from Spectra which is now in its fifth edition.  The book will be invaluable for students of Chemistry, Pharmacy, Biochemistry and those taking courses in Organic Chemistry.

Also available: Instructors Guide and Solutions Manual to Organic Structures from 2D NMR Spectra

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A01=A. M. MagillA01=H. L. LiA01=L. D. FieldAge Group_UncategorizedAuthor_A. M. MagillAuthor_H. L. LiAuthor_L. D. Fieldautomatic-updateCategory1=Non-FictionCategory=MMPGCategory=PNFRCOP=United StatesDelivery_Delivery within 10-20 working daysLanguage_EnglishPA=AvailablePrice_€50 to €100PS=Activesoftlaunch
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Product Details
  • Weight: 862g
  • Dimensions: 208 x 295mm
  • Publication Date: 29 May 2015
  • Publisher: John Wiley & Sons Inc
  • Publication City/Country: United States
  • Language: English
  • ISBN13: 9781118868942

About A. M. MagillH. L. LiL. D. Field

Professor Leslie D. Field Professor of Chemistry University of New South Wales Australia has built up an international reputation for his research on novel reagents containing coordinatively unsaturated transition metals and for his extensive work in the field of NMR spectroscopy including novel studies on heteronuclear coherence transfer and multiple quantum NMR. Field was Professor of Organic Chemistry at the University of Sydney 1990 to 2005 and Head of the School of Chemistry from 1997 to 2001. He has also been the Deputy Vice Chancellor (Research) at UNSW since April 2005.  Dr Alison Magill is a Postdoctoral Research Associate in the Field Group in the School of Chemistry UNSW with main areas of research in organometallic chemistry catalysis and NMR spectroscopy with a particular focus on the activation and functionalisation of small molecules such as carbon dioxide (CO2) and nitrogen (N2).Dr Hsiu Lin Li is a Postdoctoral Research Associate in the Field Group in the School of Chemistry UNSW with main areas of research in organometallic chemistry catalysis and NMR spectroscopy with a particular focus on the activation and functionalisation of small molecules such as carbon dioxide (CO2) and nitrogen (N2).

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