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Synthesis of GO-SalenMn and Asymmetric Catalytic Olefin Epoxidation

机译:甘油和不对称催化烯烃环氧化的合成

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Graphene oxide (GO) was used as a catalyst carrier, and after the hydroxyl group in GO was modified by 3-aminopropyltrimethoxysilane (MPTMS), axial coordination and immobilization with homogeneous chiral salenMnCl catalyst were carried out. The immobilized catalysts were characterized in detail by FT–IR, TG–DSC, XPS, EDS, SEM (seen in Section 3.2 ), X-ray, and AAS, and the successful preparation of GO-salenMn was confirmed. Subsequently, the catalytic performance of GO-salenMn for asymmetric epoxidation of α -methyl-styrene, styrene, and indene was examined, and it was observed that GO-salenMn could efficiently catalyze the epoxidation of olefins under an m -CPBA/NMO (seen in Section 3.1 ) oxidation system. In addition, α-methyl-styrene was used as a substrate to investigate the recycling performance of GO-salenMn. After repeated use for three times, the catalytic activity and enantioselectivity did not significantly change, and the conversion was still greater than 99%. As the number of cycles increased, the enantioselectivity and chemoselectivity gradually decreased, but even after 10 cycles, the enantiomeric excess was 52%, which was higher than that of the homogeneous counterpart under the same conditions. However, compared to fresh catalysts, the yield decreased from 96.9 to 55.6%.
机译:将石墨烯氧化物(GO)用作催化剂载体,通过3-氨基丙基三甲氧基硅烷(MPTM)改性羟基,进行轴向配位和固定用均匀的手性唾液栓催化剂。通过FT-IR,TG-DSC,XPS,EDS,SEM(在第3.2节中看到),X射线和AAS进行了详细表征了固定化的催化剂,并确认了Go-Salenmn的成功制备。随后,研究了α-甲基 - 苯乙烯,苯乙烯和茚的不对称环氧化的Go-salenmn的催化性能,观察到Go-salenmn可以有效地催化m -cpba / nmo下烯烃的环氧化(见第3.1节)氧化系统。此外,使用α-甲基 - 苯乙烯作为底物,以研究Go-Salenmn的再循环性能。重复使用三次后,催化活性和对映选择性没有显着变化,转化率仍然大于99%。随着循环的数量增加,对映选择性和化学选择性逐渐降低,但即使在10次循环之后,映体过量为52%,其在相同条件下高于均匀对应物的过量。然而,与新鲜催化剂相比,产率从96.9降低至55.6%。

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