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Efficient fixation and conversion of CO2 into dimethyl carbonate catalyzed by an imidazolium containing tri-cationic ionic liquid/super base system

机译:含咪唑的三阳离子离子液体/超强碱体系将CO2有效固定并转化为碳酸二甲酯

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The synthesis route used to prepare dimethyl carbonate from CO2 and methanol is a most attractive route from a green chemistry point of view. Herein, we systematically studied binary catalyst systems for the synthesis of dimethyl carbonate from CO2 and methanol. It was found that [GLY(mim)(3)][NTf2](3)IL/DBU, [GLY(mim)(3)][NTf2](3)/MTBD and [GLY(mim)(3)][NTf2](3)/TBD are effective binary catalysts for the direct synthesis of DMC without the need of a dehydration system. In particular, the [GLY(mim)(3)][NTf2](3)IL/1,8-diazabicyclo[5.4.0]undec-7-ene (DBU) system was found to have 37% MeOH conversion and 93% DMC selectivity under mild reaction conditions. However, the tri-imidazolium salts were compatible with DBU for effective CO2 adsorption, possibly because of the reactive C(2)-H in the imidazolium ring. Furthermore, the [GLY(mim)(3)][NTf2](3)IL/DBU catalytic system could be easily recovered and reused three times without any obvious loss of catalytic activity. The catalytic reactivity of [GLY(mim)(3)][NTf2](3) IL/DBU for the synthesis of DMC was proved by its predictable mechanism on the basis of C-13 NMR spectroscopy.
机译:从绿色化学的观点来看,用于由CO 2和甲醇制备碳酸二甲酯的合成路线是最有吸引力的路线。在本文中,我们系统地研究了由CO2和甲醇合成碳酸二甲酯的二元催化剂体系。发现[GLY(mim)(3)] [NTf2](3)IL / DBU,[GLY(mim)(3)] [NTf2](3)/ MTBD和[GLY(mim)(3)] [NTf2](3)/ TBD是直接合成DMC而不需要脱水系统的有效二元催化剂。特别是,发现[GLY(mim)(3)] [NTf2](3)IL / 1,8-二氮杂双环[5.4.0]十一碳-7-烯(DBU)系统的甲醇转化率为37%,93在温和的反应条件下DMC的选择性%。但是,三咪唑鎓盐与DBU兼容,可有效吸附CO2,这可能是因为咪唑鎓环中的反应性C(2)-H。此外,[GLY(mim)(3)] [NTf2](3)IL / DBU催化体系可轻松回收并重复使用三遍,而催化活性没有任何明显损失。 [GLY(mim)(3)] [NTf2](3)IL / DBU对DMC的合成具有催化活性,在C-13 NMR光谱学的基础上可预测其机理。

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