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ACS Omega | 2017

Ru-Catalyzed Estragole Isomerization under Homogeneous and Ionic Liquid Biphasic Conditions

Bárbara C. Leal; Guilherme L. P. Aydos; Paulo A. Netz; Jairton Dupont

The isomerization of estragole to trans-anethole is an important reaction and is industrially performed using an excess of NaOH or KOH in ethanol at high temperatures with very low selectivity. Simple Ru-based transition-metal complexes, under homogeneous, ionic liquid (IL)-supported (biphasic) and “solventless” conditions, can be used for this reaction. The selectivity of this reaction is more sensitive to the solvent/support used than the ligands associated with the metal catalyst. Thus, under the optimized reaction conditions, 100% conversion can be achieved in the estragole isomerization, using as little as 4 × 10–3 mol % (40 ppm) of [RuHCl(CO)(PPh3)3] in toluene, reflecting a total turnover number (TON) of 25u2009000 and turnover frequencies (TOFs) of up to 500 min–1 at 80 °C. Using a dimeric Ru precursor, [RuCl(μ-Cl)(η3:η3-C10H16)]2, in ethanol associated with P(OEt)3, a TON of 10u2009000 and a TOF of 125 min–1 are obtained with 100% conversion and 99% selectivity. These two Ru catalytic systems can be transposed to biphasic IL systems by using ionic-tagged P-ligands such as 1-(3-(diphenylphosphanyl)propyl)-2,3-dimethylimidazolium bis(trifluoromethanesulfonyl)imide immobilized in 1-(3-hydroxypropyl)-2,3-dimethylimidazolium bis(trifluoromethanesulfonyl) imide with up to 99% selectivity and almost complete estragole conversion. However, the reaction is much slower than that performed under solventless or homogeneous conditions. The use of ionic-tagged ligands significantly reduces the Ru leaching to the organic phase, compared to that in reactions performed under homogeneous conditions, where the catalytic system loses catalytic performance after the second recycling. Detailed kinetic investigations of the reaction catalyzed by [RuHCl(CO)(PPh3)3] indicate that a simplified kinetic model (a monomolecular reversible first-order reaction) is adequate for fitting the homogeneous reaction at 80 °C and under biphasic conditions. However, the kinetics of the reaction are better described if all of the elementary steps are taken into consideration, especially at 40 °C.


Archive | 2007

Method of preparation of halogen-free ionic liquids and ionic liquids prepared in this manner

Cláudia Cristiana Cassol; Bauer Ferrera; Gunter Ebeling; Jairton Dupont


Archive | 2009

METALLIC CATALYST AND METHOD FOR THE PRODUCTION OF METALLIC CATALYST

Jairton Dupont; Dagoberto Oliveira Silva; Flavio Andre Pavan; Giovanna Machado; Sergio Ribeiro Teixeira; Henrique S. Cerqueira; Ana Carlota B. dos Santos; Eduardo Falabella Sousa Aguiar


15th Brazilian Meeting on Organic Synthesis | 2013

Synthesis of fluorescent symmetric bis-imidazolium-BTD salts

Virgínia S. Souza; Gabriela I. Matiello; Patrícia C. Ferreira; Gunter Ebeling; Jairton Dupont


15th Brazilian Meeting on Organic Synthesis | 2013

Synthesis of new ionophilic SNS ligands and their Ru(II) complexes

Gabriela I. Matiello; Jairton Dupont; Gunter Ebeling


14th Brazilian Meeting on Organic Synthesis | 2013

Synthesis of fluorescent 2,1,3-benzothiadiazole-triazole-linked glycoconjugates

Angélica V. Moro; Patrícia C. Ferreira; Pedro Migowski; Diogo S. Lüdtke; Jairton Dupont


14th Brazilian Meeting on Organic Synthesis | 2013

New Supported Ionic Liquid as Catalyst for arylation of diorgano diselenides with arylboronic acids

Rodrigo Giovenardi; Daniel S. Rampon; Dagoberto O. Silva; Tiago Lima da Silva; Raoní Scheibler Rambo; Jairton Dupont; Paulo H. Schneider


Archive | 2012

Uso de nanopartículas derivadas de organocalcogenetosmetálicos como catalisadores para obtenção de hidrogênio a partir da fotólise da água

Pedro Migowski; Ernesto Schulz Lang; Bárbara Tirloni; Jairton Dupont


Archive | 2012

Processo de obtenção de catalisador enzimático magnético e produto obtido

Roberta da Silva Bussamara Rodrigues; Dario Eberhardt; Adriano F. Feil; Pedro Migowski; Jairton Dupont; Sérgio R. Teixeira


Archive | 2011

Catalisadores a base de guanidinas, suporte compreendendo catalisadores a base de guanidina, processo de produção de produção de suporte com guanidinas, e, uso de guanidinas para obtenção de biodiesel

Jairton Dupont; João Marcio Balbino; Renato Cataluña Veses; Gunter Ebeling; Eliana Weber de Menezes; Helio Costet de Mascheville Lengler

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Gunter Ebeling

Universidade Federal do Rio Grande do Sul

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Pedro Migowski

Universidade Federal do Rio Grande do Sul

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Adriano F. Feil

Universidade Federal do Rio Grande do Sul

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Crestina S. Consorti

Universidade Federal do Rio Grande do Sul

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Sérgio R. Teixeira

Universidade Federal do Rio Grande do Sul

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Gabriela I. Matiello

Universidade Federal do Rio Grande do Sul

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Giovanna Machado

Federal University of Pernambuco

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Guilherme L. P. Aydos

Universidade Federal do Rio Grande do Sul

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Patrícia C. Ferreira

Universidade Federal do Rio Grande do Sul

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