Abstract
During the years different types of N-sulfonic acids are prepared and used as efficient catalysts for the promotion of various types of organic reactions. These methods lead to high yields of the products under mild conditions during acceptable reaction times. These catalysts are recyclable and can be reused in their activities.
Keywords: N-Sulfonic acids, Catalysis, Multi-component reactions, Protection, Mild reaction conditions, Reusable catalysts.
Graphical Abstract
Current Organic Chemistry
Title:N-Sulfonic Acids: New, Efficient and Reusable Catalysts for the Acceleration of Organic Reactions
Volume: 19 Issue: 20
Author(s): Masoumeh Abedini, Farhad Shirini and Azadeh Shahriari
Affiliation:
Keywords: N-Sulfonic acids, Catalysis, Multi-component reactions, Protection, Mild reaction conditions, Reusable catalysts.
Abstract: During the years different types of N-sulfonic acids are prepared and used as efficient catalysts for the promotion of various types of organic reactions. These methods lead to high yields of the products under mild conditions during acceptable reaction times. These catalysts are recyclable and can be reused in their activities.
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Cite this article as:
Abedini Masoumeh, Shirini Farhad and Shahriari Azadeh, N-Sulfonic Acids: New, Efficient and Reusable Catalysts for the Acceleration of Organic Reactions, Current Organic Chemistry 2015; 19 (20) . https://dx.doi.org/10.2174/1385272819666150629174946
DOI https://dx.doi.org/10.2174/1385272819666150629174946 |
Print ISSN 1385-2728 |
Publisher Name Bentham Science Publisher |
Online ISSN 1875-5348 |
Call for Papers in Thematic Issues
Catalytic C-H bond activation as a tool for functionalization of heterocycles
The major topic is the functionalization of heterocycles through catalyzed C-H bond activation. The strategies based on C-H activation not only provide straightforward formation of C-C or C-X bonds but, more importantly, allow for the avoidance of pre-functionalization of one or two of the cross-coupling partners. The beneficial impact of ...read more
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