Figueiredo Marta C, Trieu Vinh, Eiden Stefanie, Heijl Jan, Koper Marc T M
Leiden Institute of Chemistry, Leiden University, P.O. Box 9502, 2300 RA Leiden, The Netherlands.
Covestro Deutschland AG, 51365 Leverkusen, Germany.
ACS Catal. 2018 Apr 6;8(4):3087-3090. doi: 10.1021/acscatal.7b04204. Epub 2018 Mar 6.
In this work, we study the synthesis of diphenyl carbonate (DPC) from phenol and CO on gold electrodes studied by means of in situ Fourier transform infrared spectroscopy (FTIR). The results show that, on gold electrodes, the formation of DPC is observed at potentials as low as 0.4 V vs Ag/AgCl, together with the formation of dimethyl carbonate (DMC) from the carbonylation of methanol that was used as a solvent. The spectroelectrochemical results also suggest that the formation of DPC occurs via the replacement of the methoxy groups from DMC with phenoxy groups from phenol and not directly by the carbonylation of phenol. Although this transesterification process is known to occur with heterogeneous catalysts, it has not been reported under electrochemical conditions. These are interesting findings, since the direct DPC production by carbonylation of phenol to DPC is usually performed with Pd-based catalysts. With this reaction scheme of transesterification happening under electrochemical conditions, other non-Pd catalysts could be used as well for one-step DPC production from phenol and CO. These findings give important mechanistic insights into this reaction and open up possibilities to an alternative process for the production of DPC.
在这项工作中,我们利用原位傅里叶变换红外光谱(FTIR)研究了在金电极上由苯酚和一氧化碳合成碳酸二苯酯(DPC)的过程。结果表明,在金电极上,相对于Ag/AgCl,在低至0.4 V的电位下即可观察到DPC的形成,同时还会由用作溶剂的甲醇羰基化形成碳酸二甲酯(DMC)。光谱电化学结果还表明,DPC的形成是通过DMC中的甲氧基被苯酚中的苯氧基取代,而不是直接由苯酚的羰基化反应产生。虽然已知这种酯交换过程会在多相催化剂作用下发生,但尚未见在电化学条件下的报道。这些发现很有趣,因为苯酚羰基化直接生成DPC的反应通常使用钯基催化剂。通过这种在电化学条件下发生的酯交换反应方案,其他非钯催化剂也可用于由苯酚和一氧化碳一步法生产DPC。这些发现为该反应提供了重要的机理见解,并为DPC生产的替代工艺开辟了可能性。