Soni Shivani, Sahiba Nusrat, Teli Sunita, Teli Pankaj, Agarwal Lokesh Kumar, Agarwal Shikha
Synthetic Organic Chemistry Laboratory, Department of Chemistry, MLSU Udaipur-313001 Rajasthan India
RSC Adv. 2023 Aug 11;13(34):24093-24111. doi: 10.1039/d3ra03871h. eCollection 2023 Aug 4.
Benzoxazole is a resourceful and important member of the heteroarenes that connects synthetic organic chemistry to medicinal, pharmaceutical, and industrial areas. It is a bicyclic planar molecule and is the most favorable moiety for researchers because it has been extensively used as a starting material for different mechanistic approaches in drug discovery. The motif exhibits a high possibility of broad substrate scope and functionalization to offer several biological activities like anti-microbial, anti-fungal, anti-cancer, anti-oxidant, anti-inflammatory effects, and so on. There has been a large upsurge in the synthesis of benzoxazole different pathways. The present article presents recent advances in synthetic strategies for benzoxazole derivatives since 2018. A variety of well-organized synthetic methodologies for benzoxazole using 2-aminophenol with aldehydes, ketones, acids, alcohols, isothiocyanates, -esters, and alkynones under different reaction conditions and catalysts, nanocatalysts, metal catalysts, and ionic liquid catalysts, with other miscellaneous techniques has been summarized.
苯并恶唑是杂芳烃中一种足智多谋且重要的成员,它将合成有机化学与医学、制药和工业领域联系起来。它是一种双环平面分子,是研究人员最青睐的部分,因为它已被广泛用作药物发现中不同机理方法的起始原料。该基序具有广泛底物范围和功能化的高可能性,可提供多种生物活性,如抗菌、抗真菌、抗癌、抗氧化、抗炎作用等。苯并恶唑的合成出现了大量不同途径。本文介绍了自2018年以来苯并恶唑衍生物合成策略的最新进展。总结了在不同反应条件和催化剂(纳米催化剂、金属催化剂和离子液体催化剂)以及其他杂项技术下,使用2-氨基酚与醛、酮、酸、醇、异硫氰酸酯、酯和炔酮合成苯并恶唑的各种组织良好的合成方法。