Preparation and application of multiphase asymmetric hydroformylation catalyst
A hydroformylation catalyst and asymmetric technology, applied in the preparation of organic compounds, carbon monoxide reaction preparation, physical/chemical process catalysts, etc., can solve the problems of poor reuse of homogeneous catalysts, influence, unfavorable product purification, etc., to achieve The effect of optimization effect, high chemical stability, and simple synthesis method
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Embodiment 1
[0016] Under the protective atmosphere of inert gas at 25°C, dissolve 5.0g (S)-5,5'-divinyl-BINAP ligand in 30mL tetrahydrofuran solvent, add 10.0g divinylbenzene monomer, stir evenly, slowly add 0.5 g of free radical initiator azobisisobutyronitrile was stirred for 0.5 h, and then the solution was transferred to a kettle with a polytetrafluoro lining, and solvothermally polymerized at 100° C. for 24 h. After the reaction, the reaction product was vacuum-dried at 65 °C for 10 h to obtain a porous chiral polymer. Take 0.044g Rh(CO) 2 (acac) was dissolved in 8 mL of N,N-dimethylformamide solvent, 2.4 g of polymer material was added, and the mixture was stirred at 100° C. for 3 h under an inert gas atmosphere. Then vacuum dried at 75°C for 10h. Namely the heterogeneous asymmetric hydroformylation catalyst 1.
Embodiment 2
[0018] In Example 2, except that 10.0 g of divinylbenzene was replaced with 10.0 g of styrene, the rest of the operations were the same as those in Example 1, and catalyst 2 was prepared.
Embodiment 3
[0020] In Example 3, except that 10.0 g of divinylbenzene was replaced with 10.0 g of 1,3,5-tris(p-vinylphenyl)benzene, the rest of the operations were the same as those in Example 1, and catalyst 3 was prepared.
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