Abstract
The syntheses of a variety of organic compounds, with a particular emphasis on nitrogen-containing substrates, with the use of simple electrochemical methods are illustrated. Electrochemical methods allow for the formation of useful and / or novel organic compounds under mild conditions, and involving electrons transfer without the use of any oxidizing or reducing reagents.
Keywords: electrolysis, oxidation, reduction, hydrazone, enamine, cyanation, hydrogenation, cyclization
Current Organic Synthesis
Title: Electrochemical Reactions as an Efficient Methodology for the Synthesis of Organic Compounds
Volume: 1 Issue: 3
Author(s): Mitsuhiro Okimoto and Yukio Takahashi
Affiliation:
Keywords: electrolysis, oxidation, reduction, hydrazone, enamine, cyanation, hydrogenation, cyclization
Abstract: The syntheses of a variety of organic compounds, with a particular emphasis on nitrogen-containing substrates, with the use of simple electrochemical methods are illustrated. Electrochemical methods allow for the formation of useful and / or novel organic compounds under mild conditions, and involving electrons transfer without the use of any oxidizing or reducing reagents.
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Cite this article as:
Okimoto Mitsuhiro and Takahashi Yukio, Electrochemical Reactions as an Efficient Methodology for the Synthesis of Organic Compounds, Current Organic Synthesis 2004; 1 (3) . https://dx.doi.org/10.2174/1570179043366693
DOI https://dx.doi.org/10.2174/1570179043366693 |
Print ISSN 1570-1794 |
Publisher Name Bentham Science Publisher |
Online ISSN 1875-6271 |
Call for Papers in Thematic Issues
Exploring the Role of Chemical Graph Theory in Advancing Current Organic Synthesis
Organic synthesis is a fundamental discipline in chemistry, crucial for the creation of complex molecules with diverse applications in pharmaceuticals, materials science, and beyond. However, the process of designing efficient synthetic routes for target molecules remains challenging. Chemical graph theory, a branch of theoretical chemistry, offers powerful tools for understanding ...read more
Photoswitches for Molecular Recognition
This Special Issue would cover the hot topics on synthesis and chemical and photophysical characterization of new photoswitchable derivatives and their applications on molecular recognition of metabolites and biological active compounds, both in physiological medium and in living cells. Photoswitches are compounds that can change their conformation or properties in ...read more
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