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2-Dimensional NMR in Carbohydrate Structural Analysis

 

作者: StevenL. Patt,   Varian Associates,  

 

期刊: Journal of Carbohydrate Chemistry  (Taylor Available online 1984)
卷期: Volume 3, issue 4  

页码: 493-511

 

ISSN:0732-8303

 

年代: 1984

 

DOI:10.1080/07328308408057914

 

出版商: Taylor & Francis Group

 

数据来源: Taylor

 

摘要:

2-Dimensional FT NMR techniques have greatly expanded the power of NMR to unravel complex chemical structures. Homonuclear 2D J-resolved experiments can be helpful in sorting out complex over lapping coupling patterns, while homonuclear chemical shift correla tion experiments can be used to determine the homonuclear coupling networks. Heteronuclear chemical shift correlation experiments can indicate the source of direct or long-range heteronuclear couplings, and hence can be used to relate the proton spectrum to the carbon spectrum. Carbon-carbon connectivity experiments reflect carbon homonuclear couplings, and, while the most insensitive of all the techniques, can be the most powerful in directly revealing the molecular framework. Techniques such as these can be used either individually or in combination to reveal part or all of the structural features of both simple and complex carbohydrates. The general features of 2D experiments are discussed in the context of their application to carbohydrates.

 

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