Mahaur Priya, Rajput Khushbu, Singh Vishal, Srivastava Vandana, Singh Sundaram
Department of Chemistry, Indian Institute of Technology (BHU) Varanasi 221005 U.P. India
RSC Adv. 2024 Jul 5;14(29):21213-21218. doi: 10.1039/d4ra03290j. eCollection 2024 Jun 27.
The present study explores an innovative approach for the efficient synthesis of 2,4-disubstituted thiazole derivatives, a class of compounds with diverse biological and pharmaceutical significance. This research presents lipase as a highly effective and environmentally friendly catalyst for thiazole synthesis. Under mild circumstances, the condensation of aryl ethenone, KBrO, and thioamide is aided by using ultrasonic energy. Moreover, we harness the power of ultrasound irradiation to accelerate the reaction, reducing reaction times and improving product yields. The lipase-catalyzed, ultrasound-assisted synthesis presented in this study represents a greener and more sustainable alternative to traditional synthetic pathways for these important compounds, offering promising potential for applications in medicinal chemistry and drug development. This approach holds the promise of advancing the field of thiazole synthesis, contributing to more sustainable and efficient chemical processes.
本研究探索了一种高效合成2,4-二取代噻唑衍生物的创新方法,这类化合物具有多种生物学和药学意义。本研究表明脂肪酶是噻唑合成的一种高效且环境友好的催化剂。在温和条件下,利用超声能量辅助芳基乙烯酮、KBrO和硫代酰胺的缩合反应。此外,我们利用超声辐射的能量来加速反应,减少反应时间并提高产物产率。本研究中提出的脂肪酶催化、超声辅助合成方法,为这些重要化合物的传统合成途径提供了一种更绿色、更可持续的替代方案,在药物化学和药物开发应用方面具有广阔的潜力。这种方法有望推动噻唑合成领域的发展,为更可持续、更高效的化学过程做出贡献。