The current invention describes new metathesis catalysts, a method for their preparation and their use.
Numerous metathesis catalysts are already known; refer to for example: Tetrahedron Lett. 1999, 40, 1091-1094, J. Am. Chem. Soc. 2000, 122, 58-71, Angew. Chem. 2003, 115, 1944-1968. It is known from these publications that substrates comprising acetal-groups considerably inhibit metathesis reactions.
New metathesis catalysts comprising acetal-groups with the formula (I) have been found in which
It was further found that the catalysts of formula (I) can be produced from compounds of formula (II)
In which R1, R2 and R3 have the above given meanings, by reaction with 2nd generation Grubbs catalyst (see Aldrich Chemistry Handbook Fine Chemicals 2009-2010, page 1453) in the presence of CuCl (J. Org. Chem. 2004, 69, 6894-6896).
It was finally found out that the catalysts of formula (I) are suitable for the modification of butadiene acrylonitrile copolymers.
wherein
Especially preferred are catalysts of formula (I), in which
wherein
Preparation of the catalyst of formula (I), wherein R1=Me, R2=C12H25, R3=NO2, Hal=C1, Lig=Lig1.
In a Schlenk apparatus, the 2nd-generation Grubbs catalyst (0.108 g, 0.13 mmol) is mixed with a solution of compound (I-1):
(0.059 g, 0.14 mmol) in 5 ml dichloromethane and 25 mg of copper-(I)-chloride and was stirred for about 50 minutes to about 60 minutes at ambient temperature under an argon atmosphere. The solvent was then removed under vacuum and the residue was purified by column chromatography. The catalyst (I) was obtained as a green solid.
Preparation of the catalyst of formula (I), wherein R1=Me, R2=C12H25, R3=NO2, Hal=C1, Lig=Lig1.
In a Schlenk apparatus, the 2nd-generation Grubbs catalyst (0.108 g, 0.13 mmol) is mixed with a solution of compound (I-1):
(0.059 g, 0.14 mmol) in 5 ml dichloromethane and 25 mg of copper-(I)-chloride and was stirred for about 50 minutes to 60 minutes under reflux in an argon atmosphere. The solvent was then removed under vacuum and the residue stirred in ethylacetate, filtered and evaporated again. The residue was purified by column chromatography (15% ethylacetate/cyclohexane). The catalyst (I) was obtained as a green solid.