Shinde Suhas, Rode Chandrashekhar
Chemical Engineering and Process Development Division, CSIR National Chemical Laboratory, Dr. Homi Bhabha Road, Pune, 411008, India.
ChemSusChem. 2017 Oct 23;10(20):4090-4101. doi: 10.1002/cssc.201701275. Epub 2017 Oct 9.
An efficient one-pot catalytic cascade sequence has been developed for the production of value-added ethers from bioderived aldehydes. Etherification of 5-(hydroxymethyl)furfural with different aliphatic alcohols over acidic Zr-montmorillonite (Zr-Mont) catalyst produced a mixture of 5-(alkoxymethyl)furfural and 2-(dialkoxymethyl)-5-(alkoxymethyl)furan. The latter was selectively converted back into 5-(alkoxymethyl)furfural by treating it with water over the same catalyst. The synthesis of 2,5-bis(alkoxymethyl)furan was achieved through a cascade sequence involving etherification, transfer hydrogenation, and re-etherification over a combination of acidic Zr-Mont and the charge-transfer hydrogenation catalyst [ZrO(OH) ]. This catalyst combination was further explored for the cascade conversion of 2-furfuraldehyde into 2-(alkoxymethyl)furan. The scope of this strategy was then extended for the reductive etherification of lignin-derived arylaldehydes to obtain the respective benzyl ethers in >80 % yield. Additionally, the mixture of Zr-Mont and ZrO(OH) does not undergo mutual destruction, which was proved by recycling experiments and XRD analysis. Both the catalysts were thoroughly characterized using BET, temperature-programmed desorption of NH and CO , pyridine-FTIR, XRD, inductively coupled plasma optical emission spectroscopy, and X-ray photoelectron spectroscopy techniques.
已开发出一种高效的一锅催化串联反应序列,用于从生物衍生醛制备增值醚。在酸性锆蒙脱石(Zr-Mont)催化剂上,5-(羟甲基)糠醛与不同脂肪醇的醚化反应生成了5-(烷氧基甲基)糠醛和2-(二烷氧基甲基)-5-(烷氧基甲基)呋喃的混合物。通过在同一催化剂上用水处理,后者可选择性地转化回5-(烷氧基甲基)糠醛。2,5-双(烷氧基甲基)呋喃的合成是通过在酸性Zr-Mont和电荷转移氢化催化剂[ZrO(OH)]的组合作用下,经过醚化、转移氢化和再醚化的串联反应序列实现的。进一步探索了这种催化剂组合用于将2-糠醛级联转化为2-(烷氧基甲基)呋喃的反应。然后将该策略的范围扩展到木质素衍生的芳醛的还原醚化反应,以>80%的产率获得相应的苄基醚。此外,Zr-Mont和ZrO(OH)的混合物不会相互破坏,循环实验和XRD分析证明了这一点。使用BET、NH₃和CO₂程序升温脱附、吡啶-FTIR、XRD、电感耦合等离子体发射光谱和X射线光电子能谱技术对两种催化剂进行了全面表征。