Zou Xiaochuan, Wang Yue, Wang Cun, Shi Kaiyun, Ren Yanrong, Zhao Xin
Department of Biological and Chemical Engineering, Chongqing University of Education, Chongqing 400067, China.
Chongqing Collaborative Innovation Center of Functional Food, Chongqing University of Education, Chongqing 400067, China.
Polymers (Basel). 2019 Jan 26;11(2):212. doi: 10.3390/polym11020212.
Organic polymers/inorganic zirconium hydrogen phosphate (ZSPP, ZPS-IPPA, and ZPS-PVPA) functionalized with 3-aminopropyltrimethoxysilane were prepared and used to support chiral Mn (salen) complexes (Jacobsen's catalyst). Different characterization methods demonstrated that the chiral Mn (salen) complexes was successfully supported on the surface of the carrier (ZSPP, ZPS-IPPA, or ZPS-PVPA) through a 3-aminopropyltrimethoxysilane group spacer. The supported catalysts effectively catalyzed epoxidation of styrene with -chloroperbenzoic acid (-CPBA) as an oxidant in the presence of -methylmorpholine -oxide (NMO) as an axial base. These results (%, 53.3⁻63.9) were significantly better than those achieved under a homogeneous counterpart (%, 46.2). Moreover, it is obvious that there was no significant decrease in catalytic activity after the catalyst 3 was recycled four times (%: from 95.0 to 92.6; %: from 64.7 to 60.1). Further recycles of catalyst 3 resulted in poor conversions, although the enantioselectivity obtained was still higher than that of corresponding homogeneous catalyst even after eight times. After the end of the eighth reaction, the solid catalyst was allowed to stand in 2 mol/L of dilute hydrochloric acid overnight, prompting an unexpected discovery that the catalytic activity of the catalyst was recovered again at the 9th and 10th cycles of the catalyst.
制备了用3-氨丙基三甲氧基硅烷官能化的有机聚合物/无机磷酸氢锆(ZSPP、ZPS-IPPA和ZPS-PVPA),并用于负载手性Mn(salen)配合物(雅各布森催化剂)。不同的表征方法表明,手性Mn(salen)配合物通过3-氨丙基三甲氧基硅烷基间隔基成功负载在载体(ZSPP、ZPS-IPPA或ZPS-PVPA)表面。在作为轴向碱的N-甲基吗啉-N-氧化物(NMO)存在下,负载型催化剂以间氯过氧苯甲酸(m-CPBA)为氧化剂有效地催化了苯乙烯的环氧化反应。这些结果(产率,53.3⁻63.9%)明显优于均相体系下的结果(产率,46.2%)。此外,很明显,催化剂3循环使用四次后催化活性没有显著降低(产率:从95.0%降至92.6%;对映体过量值:从64.7%降至60.1%)。尽管在八次循环后获得的对映选择性仍高于相应的均相催化剂,但催化剂3的进一步循环导致转化率降低。在第八次反应结束后,将固体催化剂在2mol/L稀盐酸中静置过夜,意外发现催化剂在第九次和第十次循环时催化活性再次恢复。