2006
DOI: 10.1007/s11144-006-0104-5
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Selective two-phase hydrogenation of sorbic acid using [Cp*Ru(sorbic acid)]+ catalyst 

Abstract: Unsaturated hexenoic acids are important compounds due to their utilization for specific aromatic alcohol (leaf alcohols) preparation. The influences of the reaction conditions on the sorbic acid hydrogenation to cis-hex-3-enoic acid are given. [Cp*Ru(sorbic acid)]CF 3 SO 3 was used as catalyst in two-phase hydrogenation.

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Cited by 5 publications
(3 citation statements)
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“…Comparison of catalyst activity and selectivity in sorbic acid hydrogenation in homogeneous state, two-phase [14] (ethy- lene glycol-MTBE) and heterogenized state was carried out ( Table 1). The reaction mechanism (Fig.…”
Section: Comparison Of Homogeneous Two-phase and Heterogeneous Hydromentioning
confidence: 99%
“…Comparison of catalyst activity and selectivity in sorbic acid hydrogenation in homogeneous state, two-phase [14] (ethy- lene glycol-MTBE) and heterogenized state was carried out ( Table 1). The reaction mechanism (Fig.…”
Section: Comparison Of Homogeneous Two-phase and Heterogeneous Hydromentioning
confidence: 99%
“…The same catalyst with small modifications was used for sorbic alcohol hydrogenation. Sorbic acid and sorbic alcohol hydrogenations using this catalyst were discussed in our recent works [7]. The catalyst was used first homogeneously without any adaptation in methyl-tert-butyl ether, then in heterogeneous arrangement [8] after immobilization using hydrogen bonds to the silica in methyl-tert-butyl ether and in a two-phase system, in which the catalyst was dissolved in ethylene glycol (catalyst phase) and products were dissolved in methyltert-butyl ether (product phase).…”
Section: Introductionmentioning
confidence: 99%
“…Homogenous Ru catalyst offer suitable means for the preparation of cis-hex-3-en-1-ol (one of the significant leaf alcohols). This catalyst [Cp*Ru(sorbic acid)]Tf (Tf = CF 3 SO 3 -) is also appropriate for the hydrogenation of sorbic (hexa-2,4-dienoic) acid to cis-hex-3-enoic acid, generating a very high selectivity under mild conditions [1][2][3][4]. The desired leaf alcohol can be obtained from cis-hex-3-enoic acid by a chemical reduction.…”
Section: Introductionmentioning
confidence: 99%