Balázsik K, Török B, Felföldi K, Bartók M
Organic Catalysis Research Group of the Hungarian Academy of Sciences, József Attila University, Dóm tér 8, Szeged, H-6720 Hungary.
Ultrason Sonochem. 1999 Jan;5(4):149-55. doi: 10.1016/s1350-4177(98)00043-1.
Enantioselective sonochemical hydrogenation of alpha,alpha,alpha-trifluoromethyl ketones, namely, 1,1,1-trifluoroacetophenone and 1,1,1-trifluoro-phenylacetone was carried out over various platinum catalysts modified by cinchonidine in different solvents. Both compounds yielded the (R)-alcohol as major product. The reaction rates and the enantiomeric excesses were determined over Pt/C, Pt/SiO2, Pt/K-10 and Pt/Al2O3 catalysts under conventional conditions. Since Pt/Al2O3 exhibited the best catalytic performance the effect of ultrasound on the catalytic activity and enantioselectivity was tested using this catalyst applying different sonochemical pretreatments. These methods included a pretreatment before the reaction in hydrogen and oxygen or both. The ultrasonic irradiation was found to be highly advantageous in the case of trifluoroacetophenone, whereas only moderate changes were observed using trifluoro-phenylacetone. After insonation of the catalyst, the enantioselectivity was considerably improved. Both the aerobic and anaerobic sonochemical pretreatments resulted in significant improvement in optical yield (up to 49% and 17% ee, at room temperature under 10 bar in 1,2-dichlorobenzene). In parallel, the hydrogenation rates increased to a small extent (1.1-1.2-fold increase) after hydrogenative ultrasonic pretreatment, whereas the rates decreased by a factor of 1.5-2 after aerobic insonation. To obtain more insight into the process, the effect of insonation time on the activity and enantioselectivity and actual changes of the catalyst were also studied.
在不同溶剂中,以金鸡纳啶修饰的各种铂催化剂对α,α,α-三氟甲基酮(即1,1,1-三氟苯乙酮和1,1,1-三氟苯丙酮)进行对映选择性声化学氢化反应。两种化合物均以(R)-醇作为主要产物。在常规条件下,测定了Pt/C、Pt/SiO₂、Pt/K-10和Pt/Al₂O₃催化剂上的反应速率和对映体过量值。由于Pt/Al₂O₃表现出最佳的催化性能,因此使用该催化剂并采用不同的声化学预处理方法测试了超声对催化活性和对映选择性的影响。这些方法包括在氢气和氧气或两者中反应前的预处理。结果发现,对于三氟苯乙酮,超声辐射非常有利,而对于三氟苯丙酮,仅观察到适度的变化。对催化剂进行超声处理后,对映选择性有显著提高。需氧和厌氧声化学预处理均使光学产率有显著提高(在1,2-二氯苯中,室温下10巴压力下,ee值分别高达49%和17%)。同时,氢化超声预处理后氢化速率有小幅提高(提高1.1 - 1.2倍),而需氧超声处理后速率降低了1.5 - 2倍。为了更深入了解该过程,还研究了超声处理时间对活性和对映选择性的影响以及催化剂的实际变化。