Mele Francesco, Aquilini Andrea, Constantin Ana Maria, Pancrazzi Francesco, Righi Lara, Porcheddu Andrea, Maggi Raimondo, Cauzzi Daniele Alessandro, Maestri Giovanni, Motti Elena, Capaldo Luca, Della Ca' Nicola
SynCat Lab, Department of Chemistry, Life Sciences and Environmental Sustainability (SCVSA), University of Parma, Parco Area delle Scienze, 17/A, 43124, Parma, Italy.
Department of Chemistry, Life Sciences and Environmental Sustainability (SCVSA), University of Parma, Parco Area delle Scienze, 17/A, 43124, Parma, Italy.
ChemSusChem. 2025 Jul 17;18(14):e202500461. doi: 10.1002/cssc.202500461. Epub 2025 Jun 2.
Carbon dioxide, a primary driver of global warming, offers a promising feedstock for valuable chemical synthesis. Nonetheless, the reliance on highly pressurized canisters and specialized equipment limits its practical application in fine chemical synthesis. This study explores the innovative use of sodium bicarbonate (NaHCO) as a safe, solid, on-demand source of CO under mechanochemical conditions to perform carboxylation reactions. Two applications of the practical mechanochemical syntheses using sodium bicarbonate are developed: first, the synthesis of cyclic carbamates from propargylic amines is investigated, and second, cyclic organic carbonates are derived from epoxides. The potential of this approach in the pharmaceutical industry is further showcased by demonstrating the solvent-minimized synthesis of pharmaceutically relevant molecules and introducing a C-labeling strategy utilizing NaHCO.
二氧化碳作为全球变暖的主要驱动因素,是一种有前景的用于合成有价值化学品的原料。然而,对高压罐和专用设备的依赖限制了其在精细化学合成中的实际应用。本研究探索了在机械化学条件下,将碳酸氢钠(NaHCO)作为一种安全、固态、按需供应的CO来源用于进行羧基化反应的创新用途。开发了两种使用碳酸氢钠的实际机械化学合成应用:第一,研究了从炔丙胺合成环状氨基甲酸酯;第二,从环氧化物衍生出环状有机碳酸酯。通过展示药学相关分子的溶剂最小化合成以及引入利用NaHCO的C标记策略,进一步展现了该方法在制药行业的潜力。