2008Current Organic SynthesisRequires access

Recent Advances on P,N-Containing Ligands for Transition-Metal Homogeneous Catalysis

Ioannis D. Kostas

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Abstract

Phosphorus- and nitrogen-containing ligands are among the most important and widely used ligands for transition-metal homogeneous catalysis (asymmetric or not). The present review combines information on the recent advances for the syntheses of these heterodentate ligands, their coordination chemistry with transition-metals, and their applications to homogeneous catalysis. Keywords: P,N-ligands, hybrid ligands, hemilabile ligands, transition-metal homogeneous catalysis, chiral ligands, asymmetric catalysis

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What this paper is about

Phosphorus- and nitrogen-containing ligands are among the most important and widely used ligands for transition-metal homogeneous catalysis (asymmetric or not). The present review combines information on the recent advances for the syntheses of these heterodentate ligands, their coordination chemistry with transition-metals, and their applications to homogeneous catalysis. Keywords: P,N-ligands, hybrid ligands, hemilabile ligands, transition-metal homogeneous catalysis, chiral ligands, asymmetric catalysis

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Available abstract

Phosphorus- and nitrogen-containing ligands are among the most important and widely used ligands for transition-metal homogeneous catalysis (asymmetric or not). The present review combines information on the recent advances for the syntheses of these heterodentate ligands, their coordination chemistry with transition-metals, and their applications to homogeneous catalysis. Keywords: P,N-ligands, hybrid ligands, hemilabile ligands, transition-metal homogeneous catalysis, chiral ligands, asymmetric catalysis

Key concepts: Chemistry, Homogeneous, Catalysis, Transition metal, Homogeneous catalysis, Combinatorial chemistry, Metal, Organic chemistry

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