2011Unpublished venueRequires access

Chapter 6. Synthesis of Phosphonic Acids and Their Esters as Possible Substrates for Reticular Chemistry

Jerzy Zoń, Piotr Garczarek, Michał J. Białek

Open publisher page 11 citations

Abstract

The scope of this chapter is to describe selected group of methods of synthesis of phosphonic acids and their esters which have found use or seems of interest in metal phosphonate chemistry. In the first place some properties of phosphonic group are mentioned. Those are geometry, acidity, and coordination of phosphonic group compared to carboxylic group, as the most frequently used organic group in synthesis of coordination polymers. In the main part of the chapter most popular synthetic methods leading to phosphonic acids and their esters are reviewed. Three fundamental methods are the Michaelis–Arbuzov reaction, catalytic cross-coupling reaction, and the Mannich-type condensation. These methods are presented in terms of substrate and reagent description, reaction scheme and mechanism, examples and a selected procedure Additionally number of other useful reactions leading to P–C bond formation are briefly described. If synthesis leads to an ester, transformation into a phosphonic acid is usually required. Therefore, two methods of such transformation are presented: acidic hydrolysis and transsilylation/methanolysis. This subsection consists of a description with a scheme of reaction. Some spectral characterization of obtained ligands are also considered. The final part of the chapter includes concluding remarks based on a statistical analysis of the use of the described synthetic methods in the past five years.

About this research paper

What this paper is about

The scope of this chapter is to describe selected group of methods of synthesis of phosphonic acids and their esters which have found use or seems of interest in metal phosphonate chemistry. In the first place some properties of phosphonic group are mentioned. Those are geometry, acidity, and coordination of phosphonic group compared to carboxylic group, as the most frequently used organic group in synthesis of coordination polymers. In the main part of the chapter most popular synthetic methods leading to phosphonic acids and their esters are reviewed. Three fundamental methods are the Michaelis–Arbuzov reaction, catalytic cross-coupling reaction, and the Mannich-type condensation. These methods are presented in terms of substrate and reagent description, reaction scheme and mechanism, examples and a selected procedure Additionally number of other useful reactions leading to P–C bond formation are briefly described. If synthesis leads to an ester, transformation into a phosphonic acid is usually required. Therefore, two methods of such transformation are presented: acidic hydrolysis and transsilylation/methanolysis. This subsection consists of a description with a scheme of reaction. Some spectral characterization of obtained ligands are also considered. The final part of the chapter includes concluding remarks based on a statistical analysis of the use of the described synthetic methods in the past five years.

Why it matters

OpenAlex reports 11 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

The scope of this chapter is to describe selected group of methods of synthesis of phosphonic acids and their esters which have found use or seems of interest in metal phosphonate chemistry. In the first place some properties of phosphonic group are mentioned. Those are geometry, acidity, and coordination of phosphonic group compared to carboxylic group, as the most frequently used organic group in synthesis of coordination polymers. In the main part of the chapter most popular synthetic methods leading to phosphonic acids and their esters are reviewed. Three fundamental methods are the Michaelis–Arbuzov reaction, catalytic cross-coupling reaction, and the Mannich-type condensation. These methods are presented in terms of substrate and reagent description, reaction scheme and mechanism, examples and a selected procedure Additionally number of other useful reactions leading to P–C bond formation are briefly described. If synthesis leads to an ester, transformation into a phosphonic acid is usually required. Therefore, two methods of such transformation are presented: acidic hydrolysis and transsilylation/methanolysis. This subsection consists of a description with a scheme of reaction. Some spectral characterization of obtained ligands are also considered. The final part of the chapter includes concluding remarks based on a statistical analysis of the use of the described synthetic methods in the past five years.

Key concepts: Chemistry, Reticular connective tissue, Organic chemistry, Biology, Anatomy

Related papers

Back to paper searchBrowse research topicsOriginal source
Chapter 6. Synthesis of Phosphonic Acids and Their Esters as Possible Substrates for Reticular Chemistry — Research Paper | ScholarLens