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通过N-甲苯磺酰腙与苯胺的氧化环化反应微波辅助、无金属和无叠氮化物合成功能化杂芳基-1,2,3-三唑

Microwave-Assisted, Metal- and Azide-Free Synthesis of Functionalized Heteroaryl-1,2,3-triazoles via Oxidative Cyclization of N-Tosylhydrazones and Anilines.

作者信息

Gulledge Zachary Z, Duda Damian P, Dixon David A, Carrick Jesse D

机构信息

Department of Chemistry, Tennessee Technological University, Cookeville, Tennessee 38505-0001, United States.

Department of Chemistry, The University of Alabama, Tuscaloosa, Alabama 35487, United States.

出版信息

J Org Chem. 2022 Oct 7;87(19):12632-12643. doi: 10.1021/acs.joc.2c01042. Epub 2022 Sep 20.

Abstract

As the search for competent soft-Lewis basic complexants for separations continues to evolve toward identification of a chemoselective moiety for speciation of the minor actinides from the electronically similar lanthanides, synthetic methods must congruently evolve. Synthetic options to convergently construct unsymmetric heteroaryl donor complexants incorporating a 1,2,3-triazole from accessible starting materials for evaluation in separation assays necessitated the development of the described methodology. In this report, metal- and azide-free synthesis of diversely functionalized pyridyl-1,2,3-triazole derivatives facilitated by microwave irradiation was leveraged to prepare a novel class of tridentate ligands. The described work negates the incorporation of thermally sensitive and toxic organoazides by using N-tosylhydrazones and anilines as viable synthetic equivalents in an efficient 12 min reaction time. Adaptation to alternative synthons useful for drug discovery was also realized. Method discovery, optimization, N-tosylhydrazone and aniline substrate scope, as well as a preliminary mechanistic hypotheses supported by DFT calculations are reported herein.

摘要

随着寻找用于分离的有效软路易斯碱配合剂的工作不断朝着识别一种化学选择性部分以从电子结构相似的镧系元素中分离次要锕系元素的方向发展,合成方法也必须相应地发展。从易得的起始原料出发,通过收敛合成法构建含有1,2,3-三唑的不对称杂芳基供体配合剂以用于分离分析评估,这就需要开发所描述的方法。在本报告中,利用微波辐射促进的无金属和无叠氮化物合成各种功能化的吡啶基-1,2,3-三唑衍生物,来制备一类新型三齿配体。所描述的工作通过使用N-甲苯磺酰腙和苯胺作为可行的合成等效物,在12分钟的有效反应时间内,避免了引入热敏性和有毒的有机叠氮化物。还实现了对可用于药物发现的替代合成子的适应性。本文报道了方法的发现、优化、N-甲苯磺酰腙和苯胺底物范围,以及由密度泛函理论计算支持的初步机理假设。

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