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通过有机催化将糠醛和5-羟甲基糠醛升级为产率定量且原子效率高的C10和C12呋喃偶姻。

Organocatalytic upgrading of furfural and 5-hydroxymethyl furfural to C10 and C12 furoins with quantitative yield and atom-efficiency.

作者信息

Zang Hongjun, Chen Eugene Y X

机构信息

Department of Chemistry, Colorado State University, Fort Collins, CO 80523-1872, USA.

出版信息

Int J Mol Sci. 2015 Mar 30;16(4):7143-58. doi: 10.3390/ijms16047143.

Abstract

There is increasing interest in the upgrading of C5 furfural (FF) and C6 5-hydroxymethyl furfural (HMF) into C10 and C12 furoins as higher energy-density intermediates for renewable chemicals, materials, and biofuels. This work utilizes the organocatalytic approach, using the in situ generated N,S-heterocyclic carbene catalyst derived from thiazolium ionic liquids (ILs), to achieve highly efficient self-coupling reactions of FF and HMF. Specifically, variations of the thiazolium IL structure have led to the most active and efficient catalyst system of the current series, which is derived from a new thiazolium IL carrying the electron-donating acetate group at the 5-ring position. For FF coupling by this IL (0.1 mol %, 60 °C, 1 h), when combined with Et3N, furoin was obtained in >99% yield. A 97% yield of the C12 furoin was also achieved from the HMF coupling by this catalyst system (10 mol % loading, 120 °C, 3 h). On the other hand, the thiazolium IL bearing the electron-withdrawing group at the 5-ring position is the least active and efficient catalyst. The mechanistic aspects of the coupling reaction by the thiazolium catalyst system have also been examined and a mechanism has been proposed.

摘要

将C5糠醛(FF)和C6 5-羟甲基糠醛(HMF)升级为C10和C12呋喃偶姻作为可再生化学品、材料和生物燃料的更高能量密度中间体,这方面的兴趣与日俱增。本工作采用有机催化方法,使用由噻唑鎓离子液体(ILs)原位生成的N,S-杂环卡宾催化剂,以实现FF和HMF的高效自偶联反应。具体而言,噻唑鎓IL结构的变化产生了当前系列中最具活性和效率的催化剂体系,该体系源自一种在5-环位置带有供电子乙酸酯基团的新型噻唑鎓IL。对于通过该IL(0.1 mol%,60°C,1小时)进行的FF偶联,当与Et3N结合时,呋喃偶姻的产率>99%。通过该催化剂体系(10 mol%负载量,120°C,3小时)进行HMF偶联,也实现了97%的C12呋喃偶姻产率。另一方面,在5-环位置带有吸电子基团的噻唑鎓IL是活性和效率最低的催化剂。还研究了噻唑鎓催化剂体系偶联反应的机理方面,并提出了一种机理。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0f70/4425009/deffadfec73a/ijms-16-07143-g006.jpg

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