Heterogeneous Suzuki cross-coupling reactions over palladium/hydrotalcite catalysts

The efficiency of various heterogeneous solids consisting of palladium supported on hydrotalcite as catalysts in the Suzuki cross-coupling reaction between bromobenzene and phenylboronic acid was studied. Based on the catalytic activity results, the reaction develops to an acceptable extent with 100...

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Published inJournal of colloid and interface science Vol. 302; no. 2; pp. 568 - 575
Main Authors Mora, Manuel, Jiménez-Sanchidrián, César, Ruiz, J. Rafael
Format Journal Article
LanguageEnglish
Published San Diego, CA Elsevier Inc 15.10.2006
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Abstract The efficiency of various heterogeneous solids consisting of palladium supported on hydrotalcite as catalysts in the Suzuki cross-coupling reaction between bromobenzene and phenylboronic acid was studied. Based on the catalytic activity results, the reaction develops to an acceptable extent with 100% selectivity at moderate temperatures in the presence of some of the catalysts. The best results were provided by a catalyst consisting of an acetate–pyridine complex of Pd supported on hydrotalcite that gave high conversion values even after three reuses. The reactions conditions were very mild (a temperature of 55 °C and atmospheric pressure). In fact, the catalyst provided conversion and selectivity results surpassing those of existing heterogeneous phase catalysts and most homogeneous phase catalysts for the same purpose.
AbstractList The efficiency of various heterogeneous solids consisting of palladium supported on hydrotalcite as catalysts in the Suzuki cross-coupling reaction between bromobenzene and phenylboronic acid was studied. Based on the catalytic activity results, the reaction develops to an acceptable extent with 100% selectivity at moderate temperatures in the presence of some of the catalysts. The best results were provided by a catalyst consisting of an acetate-pyridine complex of Pd supported on hydrotalcite that gave high conversion values even after three reuses. The reactions conditions were very mild (a temperature of 55 degrees C and atmospheric pressure). In fact, the catalyst provided conversion and selectivity results surpassing those of existing heterogeneous phase catalysts and most homogeneous phase catalysts for the same purpose.The efficiency of various heterogeneous solids consisting of palladium supported on hydrotalcite as catalysts in the Suzuki cross-coupling reaction between bromobenzene and phenylboronic acid was studied. Based on the catalytic activity results, the reaction develops to an acceptable extent with 100% selectivity at moderate temperatures in the presence of some of the catalysts. The best results were provided by a catalyst consisting of an acetate-pyridine complex of Pd supported on hydrotalcite that gave high conversion values even after three reuses. The reactions conditions were very mild (a temperature of 55 degrees C and atmospheric pressure). In fact, the catalyst provided conversion and selectivity results surpassing those of existing heterogeneous phase catalysts and most homogeneous phase catalysts for the same purpose.
The efficiency of various heterogeneous solids consisting of palladium supported on hydrotalcite as catalysts in the Suzuki cross-coupling reaction between bromobenzene and phenylboronic acid was studied. Based on the catalytic activity results, the reaction develops to an acceptable extent with 100% selectivity at moderate temperatures in the presence of some of the catalysts. The best results were provided by a catalyst consisting of an acetate–pyridine complex of Pd supported on hydrotalcite that gave high conversion values even after three reuses. The reactions conditions were very mild (a temperature of 55 °C and atmospheric pressure). In fact, the catalyst provided conversion and selectivity results surpassing those of existing heterogeneous phase catalysts and most homogeneous phase catalysts for the same purpose.
The efficiency of various heterogeneous solids consisting of palladium supported on hydrotalcite as catalysts in the Suzuki cross-coupling reaction between bromobenzene and phenylboronic acid was studied. Based on the catalytic activity results, the reaction develops to an acceptable extent with 100% selectivity at moderate temperatures in the presence of some of the catalysts. The best results were provided by a catalyst consisting of an acetate-pyridine complex of Pd supported on hydrotalcite that gave high conversion values even after three reuses. The reactions conditions were very mild (a temperature of 55 degrees C and atmospheric pressure). In fact, the catalyst provided conversion and selectivity results surpassing those of existing heterogeneous phase catalysts and most homogeneous phase catalysts for the same purpose.
Author Jiménez-Sanchidrián, César
Mora, Manuel
Ruiz, J. Rafael
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Issue 2
Keywords Phenylboronic acid
Bromobenzene
Hydrotalcite
Palladium catalyst
Suzuki cross-coupling reaction
Acids
Transition metal
Palladium
Platinoid
Catalyst
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Snippet The efficiency of various heterogeneous solids consisting of palladium supported on hydrotalcite as catalysts in the Suzuki cross-coupling reaction between...
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SubjectTerms Adsorption
Aluminum Hydroxide - chemistry
Biphenyl Compounds - chemical synthesis
Biphenyl Compounds - chemistry
Boronic Acids - chemistry
Bromobenzene
Bromobenzenes - chemistry
Catalysis
Chemistry
Exact sciences and technology
General and physical chemistry
Hydrotalcite
Magnesium Hydroxide - chemistry
Magnetic Resonance Spectroscopy - methods
Molecular Structure
Organometallic Compounds - chemical synthesis
Organometallic Compounds - chemistry
Palladium - chemistry
Palladium catalyst
Particle Size
Phenylboronic acid
Sensitivity and Specificity
Solvents - chemistry
Spectrophotometry, Infrared - methods
Surface Properties
Suzuki cross-coupling reaction
Temperature
Theory of reactions, general kinetics. Catalysis. Nomenclature, chemical documentation, computer chemistry
Title Heterogeneous Suzuki cross-coupling reactions over palladium/hydrotalcite catalysts
URI https://dx.doi.org/10.1016/j.jcis.2006.06.058
https://www.ncbi.nlm.nih.gov/pubmed/16887134
https://www.proquest.com/docview/68844321
Volume 302
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