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A mechanism of alkali metal carbonates catalysing the synthesis of β-hydroxyethyl sulfide with mercaptan and ethylene carbonate

机译:碱金属碳酸盐催化硫醇和碳酸亚乙酯合成β-羟乙基硫化物的机理

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摘要

The reaction of beta-hydroxyethylation is essential to the current practice of organic chemistry. Here, we proposed a new and green route to synthesize 2-hydroxyethyl n-alkyl sulfide with n-alkyl mercaptan and ethylene carbonate (EC) in the presence of alkali carbonates as catalysts and revealed the mechanism by experiments and theoretical calculations. The reaction reported proceeds rapidly with high yields when it is performed at 120 degrees C and the catalytic loading is similar to 1 mol%. This protocol is applicable to other mercaptans to synthesize the corresponding beta-hydroxyethyl sulfide. Density functional theory-based calculations show the energy profile for the reaction pathway. The rate-determining step is the ring-opening of EC. A negatively charged O atom of alkali carbonates approaches the S atom of -SH under the influence of hydrogen bonds. An activated S atom that carries more negative charge serves as a nucleophilic reagent and assists in the ring-opening of EC by reducing the Mayer bond orders of the C1-O1 bond in EC. Alkali cations also contribute to the C1-O1 bond cleavage. The energy barrier for the ring-opening of EC decreases with the decrease of electronegativity of alkali cations. Subsequent transference of a H atom leads to the formation of beta-hydroxyethyl sulfide, the dissociation of CO2 and the reduction of K2CO3.
机译:β-羟乙基化反应对于当前有机化学的实践至关重要。在这里,我们提出了一种新的绿色路线,在碱金属碳酸盐存在的情况下,用正烷基硫醇和碳酸亚乙酯(EC)合成2-羟乙基正烷基硫醚,并通过实验和理论计算揭示了机理。当报道的反应在120摄氏度下进行且催化负载量接近1 mol%时,该反应以高收率快速进行。该方案适用于其他硫醇合成相应的β-羟乙基硫醚。基于密度泛函理论的计算显示了反应路径的能量分布。速率确定步骤是EC的开环。在氢键的影响下,碱金属碳酸盐带负电的O原子接近-SH的S原子。带有更多负电荷的活化S原子用作亲核试剂,并通过降低EC中C1-O1键的Mayer键顺序来帮助EC开环。碱阳离子也有助于C1-O1键的裂解。 EC的开环能垒随着碱金属阳离子电负性的降低而降低。 H原子的随后转移导致β-羟乙基硫化物的形成,CO 2的解离和K 2 CO 3的还原。

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