Nayek Pravat, Mal Prasenjit
School of Chemical Sciences, National Institute of Science Education and Research (NISER) Bhubaneswar, An OCC of Homi Bhabha National Institute, PO Bhimpur-Padanpur, Via Jatni, District Khurda, Odisha, 752050, India.
Chemistry. 2024 Jun 20;30(35):e202401027. doi: 10.1002/chem.202401027. Epub 2024 May 23.
Utilizing periodic acid as an environmentally benign oxidizing agent, this study introduces a novel mechanochemical method that mimics ozonolysis to convert internal alkynes into 1,2-diketones, showcasing effective emulation of ozone's reactivity. Notably, this oxidation occurs at room temperature in aerobic conditions, eliminating the need for toxic transition metals, hazardous oxidants, or expensive solvents. Through control experiments validating the mechanism, substantial evidence supports a concerted reaction pathway. This progress marks a significant stride toward cleaner and more efficient chemical synthesis, mitigating the environmental impact of conventional processes. Assessing the green chemistry metrics in both solvent-free and previously reported solvent-based methods, our eco-friendly protocol demonstrates an E-factor of 7.40, a 51.7 % atom economy, a 45.5 % atom efficiency, 100 % carbon efficiency, and 11.9 % reaction mass efficiency when solvents are not used.
本研究利用高碘酸作为环境友好型氧化剂,引入了一种模拟臭氧分解的新型机械化学方法,将内炔转化为1,2 - 二酮,有效模拟了臭氧的反应活性。值得注意的是,这种氧化反应在有氧条件下于室温发生,无需使用有毒过渡金属、危险氧化剂或昂贵溶剂。通过验证机理的对照实验,大量证据支持协同反应途径。这一进展标志着朝着更清洁、更高效的化学合成迈出了重要一步,减轻了传统工艺对环境的影响。在无溶剂和先前报道的基于溶剂的方法中评估绿色化学指标时,我们的环保方案在不使用溶剂时显示出7.40的E - 因子、51.7%的原子经济性、45.5%的原子效率、100%的碳效率和11.9%的反应质量效率。