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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:CO2的高效固定和转化含有三阳离子离子液体/超基体系的咪唑鎓催化催化碳酸二甲酯

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The synthesis route used to prepare dimethyl carbonate from CO _(2) 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 CO _(2) and methanol. It was found that [GLY(mim) _(3) ][NTf _(2) ] _(3) IL/DBU, [GLY(mim) _(3) ][NTf _(2) ] _(3) /MTBD and [GLY(mim) _(3) ][NTf _(2) ] _(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) ][NTf _(2) ] _(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 CO _(2) adsorption, possibly because of the reactive C(2)–H in the imidazolium ring. Furthermore, the [GLY(mim) _(3) ][NTf _(2) ] _(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) ][NTf _(2) ] _(3) IL/DBU for the synthesis of DMC was proved by its predictable mechanism on the basis of ~(13) C NMR spectroscopy.
机译:用于制备CO _(2)和甲醇的二甲基碳酸酯的合成途径是从绿色化学观点的最具吸引力的路线。在此,我们通过CO _(2)和甲醇来系统地研究了二元催化剂体系以合成碳酸二甲酯。发现[gly(mim)_(3)] _(3)IL / dBu,[GLY(MIM)_(3)] [NTF _(2)] _(3) / MTBD和[GLY(MIM)_(3)] [NTF _(2)] _(3)/ TBD是用于直接合成DMC的有效二元催化剂,而无需脱水系统。特别地,发现[NTF(MIM)_(3)] _(3)IL / 1,8-diazabidclo [5.4.0] UNDEC-7-ENE(DBU)系统具有在温和反应条件下,37%MeOH转化率和93%的DMC选择性。然而,三咪唑鎓盐与DBU与有效CO_(2)吸附的DBU相容,可能是因为咪唑鎓环中的反应性C(2)-H。此外,[GLY(MIM)_(3)] [NTF _(2)] _(3)IL / DBU催化系统可以容易地回收并重复使用3倍,而不会损失催化活性。通过其可预测机制证明了[GLY(MIM)_(3)] [NTF _(3)] [NTF _(2)] _(3)IL / DBU的催化反应性通过其可预测机制在〜(13)C NMR光谱的基础上证明了其可预测的机制。

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