Huynh Thao Nguyen Thanh, Nguyen Khuyen Thu, Krongyut Chisanu, Lai Rung-Yi, Sukwattanasinitt Mongkol, Wacharasindhu Sumrit
Nanotec-CU Center of Excellence on Food and Agriculture, Department of Chemistry, Faculty of Science, Chulalongkorn University, Bangkok 10330, Thailand.
School of Chemistry, Institute of Science, Suranaree University of Technology, Nakhon Ratchasima 30000, Thailand.
Org Biomol Chem. 2025 Feb 19;23(8):1923-1929. doi: 10.1039/d4ob01896f.
The bromination of α-oxo ketene dithioacetals using KBr/HO, catalyzed by vanadium chloroperoxidase (VCPO), has been successfully demonstrated. A comparative study of enzymatic processes "on water" "in water", using 2 wt% of the surfactant TPGS-750-M revealed that the in-water protocol not only provides higher yields but also accommodates a broader substrate scope. This bromination method in an aqueous micellar medium enabled the preparation of brominated α-oxo ketene dithioacetals in fair to excellent yields (23 examples). In the micellar system, the substrate concentration was increased up to 50 mM, and the amounts of the brominating agents KBr and HO were reduced to approximately 2.0 equivalents without compromising efficiency. Notably, this process allows for the gram-scale preparation of brominated α-oxo ketene dithioacetals in high yields. Key advantages of this method include its benign and eco-friendly nature, the use of water as a green solvent, and its potential for large-scale production of brominated α-oxo ketene dithioacetals.
使用钒氯过氧化物酶(VCPO)催化,以KBr/HO对α-氧代烯酮二硫代缩醛进行溴化反应已得到成功证明。使用2 wt%的表面活性剂TPGS-750-M对“水相上”和“水相中”的酶促过程进行的比较研究表明,水相中方案不仅产率更高,而且底物范围更广。这种在水性胶束介质中的溴化方法能够以中等至优异的产率制备溴化α-氧代烯酮二硫代缩醛(23个实例)。在胶束体系中,底物浓度提高到50 mM,溴化剂KBr和HO的用量减少到约2.0当量,而不影响效率。值得注意的是,该过程能够以高产率进行克级规模的溴化α-氧代烯酮二硫代缩醛的制备。该方法的主要优点包括其温和且环保的性质、使用水作为绿色溶剂以及其大规模生产溴化α-氧代烯酮二硫代缩醛的潜力。