Abstract
Our novel approach starts from a 1,1,3,4-tetrachloro-2,4-dinitrobuta-1,3-diene (5) being one of the most prominent members of this relatively new class of synthetic building blocks. Because of its multifunctional chemical behavior, polyhalogenated nitrobuta-1,3- dienes proved to be versatile reagents in the synthesis of a large variety of sulfurated, (hetero)cyclic, and acyclic derivatives. We describe our studies concerning successive nucleophilic vinylic substitution reactions of dinitrobuta-1,3-diene in order to establish the reactivity profile of this precursor and determine whether this precursor could be used for the synthesis of many dinitrodiene analogues offering new methodology for the synthesis of polyfunctional precursors that are difficult to access. Some of the resulting perfunctionalized 2,4- dinitrobuta-1,3-dienes are subjected to further transformations to give promising candidates with respect to biological activity.
Keywords: Click chemistry, Dienes, Nitro compounds, Nitroalkenes, Persulfurated Alkenes, Polyhalogenated Compounds, Polysulfanyl Buta-1,3-dienes, Sulfides
Current Organic Synthesis
Title: Synthetic Exploitation of Halogenated Alkenes Containing EWG: Polysubstituted Sulfanyl Dinitro Butadienes from Sequential Nucleophilic Substitutions
Volume: 8 Issue: 6
Author(s): Cemil Ibis and Amac Fatih Tuyun
Affiliation:
Keywords: Click chemistry, Dienes, Nitro compounds, Nitroalkenes, Persulfurated Alkenes, Polyhalogenated Compounds, Polysulfanyl Buta-1,3-dienes, Sulfides
Abstract: Our novel approach starts from a 1,1,3,4-tetrachloro-2,4-dinitrobuta-1,3-diene (5) being one of the most prominent members of this relatively new class of synthetic building blocks. Because of its multifunctional chemical behavior, polyhalogenated nitrobuta-1,3- dienes proved to be versatile reagents in the synthesis of a large variety of sulfurated, (hetero)cyclic, and acyclic derivatives. We describe our studies concerning successive nucleophilic vinylic substitution reactions of dinitrobuta-1,3-diene in order to establish the reactivity profile of this precursor and determine whether this precursor could be used for the synthesis of many dinitrodiene analogues offering new methodology for the synthesis of polyfunctional precursors that are difficult to access. Some of the resulting perfunctionalized 2,4- dinitrobuta-1,3-dienes are subjected to further transformations to give promising candidates with respect to biological activity.
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Cite this article as:
Ibis Cemil and Fatih Tuyun Amac, Synthetic Exploitation of Halogenated Alkenes Containing EWG: Polysubstituted Sulfanyl Dinitro Butadienes from Sequential Nucleophilic Substitutions, Current Organic Synthesis 2011; 8 (6) . https://dx.doi.org/10.2174/1570179411108060861
DOI https://dx.doi.org/10.2174/1570179411108060861 |
Print ISSN 1570-1794 |
Publisher Name Bentham Science Publisher |
Online ISSN 1875-6271 |
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