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Selective catalytic etherification of glycerol formal and solketal with dialkyl carbonates and K2CO3

机译:碳酸二烷基酯和K2CO3选择性催化将甲醛缩甲醛和Solketal甘油醚化

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At T > 200 °C, in the presence of K2CO3 as a catalyst, an original etherification procedure of non-toxic acetals such as glycerol formal (GlyF) and solketal has been investigated by using dialkyl carbonates as safe alkylating agents. The effects of parameters including the temperature, the reaction time, and the loading of both the catalyst and the dialkyl carbonate have been detailed for the model case of dimethyl carbonate (DMC). Both GlyF and solketal were efficiently alkylated by DMC to produce the corresponding O-methyl ethers with selectivity up to 99% and excellent yields (86-99%, by GC). The high selectivity could be accounted for by a mechanistic study involving a combined sequence of methylation, carboxymethylation, decarboxylation and hydrolysis processes. The O-methylation of GlyF and solketal could be successfully scaled up for multigram synthesis even operating with a moderate excess (5 molar equiv.) of DMC and in the absence of additional solvent. Notwithstanding the advantageous reduction of the process mass index, scale up experiments provided evidence that prolonged reaction times may induce the decomposition of DMC mainly by the loss of CO2. The K2CO3-catalyzed etherification of solketal with other carbonates such as dibenzyl and diethyl carbonate (DBnC and DEC, respectively), proceeded with the same good selectivity observed for DMC. However, at 220 °C, the solketal conversion did not exceed 81% since both DBnC and DEC were extensively consumed in competitive decarboxylation and hydrolysis reactions.
机译:在T> 200°C的条件下,在以K2CO3为催化剂的条件下,已通过使用碳酸二烷基酯作为安全的烷基化剂,研究了无毒缩醛如甘油缩甲醛(GlyF)和Solketal的原始醚化过程。对于碳酸二甲酯(DMC)的模型情况,已详细说明了参数的影响,包括温度,反应时间以及催化剂和碳酸二烷基酯的负载量。 GlyF和Solketal均可通过DMC有效地烷基化,以生产相应的O-甲基醚,其选择性高达99%,且收率极佳(GC测得为86-99%)。高选择性可以由涉及甲基化,羧甲基化,脱羧和水解过程的组合顺序的机理研究来解释。即使在适度过量(5摩尔当量)的DMC且没有其他溶剂的情况下操作,GlyF和solketal的O-甲基化也可以成功扩大规模以进行多克合成。尽管有利地降低了过程质量指数,但按比例放大的实验提供了证据,即延长的反应时间可能主要是由于CO2的损失而引起DMC的分解。 solketal与其他碳酸盐(如碳酸二苄酯和碳酸二乙酯(分别为DBnC和DEC))的K2CO3催化醚化反应,对DMC观察到的选择性相同。但是,在220°C时,由于竞争性脱羧和水解反应中DBnC和DEC均被大量消耗,因此其缩酮转化率不超过81%。

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