Huang Zeng, Zhang Chenjie, Zhou Pengfei, Wang Cheng, Liang Taoyuan, Zhao Shuangliang, Zhang Zhuan
Guangxi Key Laboratory of Petrochemical Resource Processing and Process Intensification Technology, School of Chemistry and Chemical Engineering, Guangxi University, Nanning, Guangxi 530004, China.
J Org Chem. 2025 Jan 17;90(2):1115-1125. doi: 10.1021/acs.joc.4c02680. Epub 2025 Jan 3.
Among the known aromatic -heterocycles, pyrroles are significant and versatile privileged components in pharmacologically relevant molecules. Herein, we demonstrate a protocol for the selective construction of alkynylated pyrroles in a diversity-oriented fashion through divergent C2/C5 site-selective alkynylation of pyrrole derivatives by employing a palladium catalyst with two different solvent systems. In the presence of 1,4-dioxane, the C2-alkynylation process via chelation-assisted palladation is favored. However, the use of a dimethylformamide/dimethyl sulfoxide (DMF/DMSO) solvent system could override the chelation effect of a weak ester-directing group, favoring the C5-alkynylation process via electrophilic palladation. Late-stage modification of biologically relevant scaffolds and further derivatization of the products highlighted the potential utility and importance of the solvent-controlled regiodivergence.
在已知的芳杂环中,吡咯是药理相关分子中重要且通用的优势成分。在此,我们展示了一种通过使用钯催化剂和两种不同溶剂体系,以多样化导向的方式对吡咯衍生物进行C2/C5位点选择性炔基化反应,从而选择性构建炔基化吡咯的方法。在1,4-二氧六环存在下,通过螯合辅助钯化的C2-炔基化过程占优势。然而,使用二甲基甲酰胺/二甲基亚砜(DMF/DMSO)溶剂体系可以克服弱酯导向基团的螯合效应,有利于通过亲电钯化的C5-炔基化过程。生物相关支架的后期修饰以及产物的进一步衍生化突出了溶剂控制区域发散性的潜在实用性和重要性。