Mukku Narasimharao, Madivalappa Davanagere Prabhakara, Chanda Kaushik, Maiti Barnali
Department of Chemistry, School of Advanced Sciences, Vellore Institute of Technology, Vellore 632014, India.
ACS Omega. 2020 Oct 20;5(43):28239-28248. doi: 10.1021/acsomega.0c04130. eCollection 2020 Nov 3.
In this study, a highly efficient two-component [3 + 2] cycloaddition reaction of substituted aryl aldehydes with 4-toluenesulfonylmethyl isocyanide (TosMIC) in the presence of 2 equiv of potassium phosphate as a base to 5-substituted oxazoles were established in a isopropanol medium under microwave irradiation. However, using 1 equiv of KPO as a base resulted in the diastereoselective synthesis of 4,5-disubstituted oxazolines under identical reaction conditions. The foremost benefits of these protocols are the moderate-to-excellent yields with good functional group compatibility, simple experimental procedure, inexpensive readily available starting materials, nonchromatographic purification, and high bond-forming efficiency. The synthetic manipulation reported herein represents a cleaner route to the sustainable preparation of 5-substituted oxazoles and diastereoselective 4,5-disubstituted oxazolines derivatives.
在本研究中,在微波辐射下,于异丙醇介质中,以2当量磷酸钾作为碱,使取代芳醛与对甲苯磺酰甲基异腈(TosMIC)发生高效的两组分[3 + 2]环加成反应,生成5-取代恶唑。然而,在相同反应条件下,使用1当量KPO作为碱则会非对映选择性地合成4,5-二取代恶唑啉。这些方法的主要优点是产率适中至优异、官能团兼容性良好、实验步骤简单、起始原料廉价易得、无需柱色谱纯化以及成键效率高。本文报道的合成操作是可持续制备5-取代恶唑和非对映选择性4,5-二取代恶唑啉衍生物的更清洁途径。