Simple cobalt tetraphenylporphyrins was synthesized and used to catalyze cyclohexene oxidation into cyclohexenone with air in the absence of additives and solvents.The cobalt metalloporphyrin was found to be very effe...Simple cobalt tetraphenylporphyrins was synthesized and used to catalyze cyclohexene oxidation into cyclohexenone with air in the absence of additives and solvents.The cobalt metalloporphyrin was found to be very effective catalysts for the synthesis of cyclohexenone from cyclohexene.The research results showed that the temperature, air velocity,catalyst concentration and pressure influenced the yield and conversion of cyclohexene oxidation with air.For cyclohexene oxidation catalyzed by simple cobalt tetraphenylporphyrin, the conversion of cyclohexene was up to 21%, the yield of cyclohexenone reached 75%, under the optimum conditions of 0.4 MPa, 80 ℃ and 2.3×10 -5 mol·L -1 cobalt tetraphenylporphyrin.展开更多
The method for synthesis of the title compound has been improved, with product yield being increased to 58%. The following measures have been adopted: using 1,8-diazabicyclo\undec-7-ene(DBU) as catalyst instead of pip...The method for synthesis of the title compound has been improved, with product yield being increased to 58%. The following measures have been adopted: using 1,8-diazabicyclo\undec-7-ene(DBU) as catalyst instead of piperidine; adding benzene in the reaction mixture to favor azeotropic dehydration. The optimum molar ratio of DBU/ethylacetoacetate/solid paraformaldehyde was 4∶20∶11.展开更多
Because of multiple potential reaction sites and variable oxidation depths,oxidation of cyclohexene can lead to a mixture of products with different oxidation states and functional groups,such as 7-oxabicyclo[4.1.0]he...Because of multiple potential reaction sites and variable oxidation depths,oxidation of cyclohexene can lead to a mixture of products with different oxidation states and functional groups,such as 7-oxabicyclo[4.1.0]heptane,trans/cis-cyclohexane-1,2-diol,cyclohex-2-en-1-ol,cyclohex-2-en-1-one,and even adipic acid.These products are broadly and abundantly used intermediates in the chemical industry;therefore,controllable oxidation reactions for cyclohexene that can selectively afford the targeted products are synthetically valuable for applications in both the academy and industry,thus becoming the aim of synthetic and catalytic chemists in the field.Many reports on selective oxidation of cyclohexene have recently appeared in the literature because of its significance.This short review summarizes the recent advances on this subject,and the contents are mainly classified based on the chosen oxidants.We hope that this review can provide a useful guide for controllable and selective catalytic oxidation of cyclohexene for interested readers from both the academy and industry.展开更多
文摘Simple cobalt tetraphenylporphyrins was synthesized and used to catalyze cyclohexene oxidation into cyclohexenone with air in the absence of additives and solvents.The cobalt metalloporphyrin was found to be very effective catalysts for the synthesis of cyclohexenone from cyclohexene.The research results showed that the temperature, air velocity,catalyst concentration and pressure influenced the yield and conversion of cyclohexene oxidation with air.For cyclohexene oxidation catalyzed by simple cobalt tetraphenylporphyrin, the conversion of cyclohexene was up to 21%, the yield of cyclohexenone reached 75%, under the optimum conditions of 0.4 MPa, 80 ℃ and 2.3×10 -5 mol·L -1 cobalt tetraphenylporphyrin.
文摘The method for synthesis of the title compound has been improved, with product yield being increased to 58%. The following measures have been adopted: using 1,8-diazabicyclo\undec-7-ene(DBU) as catalyst instead of piperidine; adding benzene in the reaction mixture to favor azeotropic dehydration. The optimum molar ratio of DBU/ethylacetoacetate/solid paraformaldehyde was 4∶20∶11.
文摘Because of multiple potential reaction sites and variable oxidation depths,oxidation of cyclohexene can lead to a mixture of products with different oxidation states and functional groups,such as 7-oxabicyclo[4.1.0]heptane,trans/cis-cyclohexane-1,2-diol,cyclohex-2-en-1-ol,cyclohex-2-en-1-one,and even adipic acid.These products are broadly and abundantly used intermediates in the chemical industry;therefore,controllable oxidation reactions for cyclohexene that can selectively afford the targeted products are synthetically valuable for applications in both the academy and industry,thus becoming the aim of synthetic and catalytic chemists in the field.Many reports on selective oxidation of cyclohexene have recently appeared in the literature because of its significance.This short review summarizes the recent advances on this subject,and the contents are mainly classified based on the chosen oxidants.We hope that this review can provide a useful guide for controllable and selective catalytic oxidation of cyclohexene for interested readers from both the academy and industry.