Cp*Ir(iii) complexes catalyzed solvent-free synthesis of quinolines, pyrroles and pyridines via an ADC strategy†

IF 2.9 3区 化学 Q1 CHEMISTRY, ORGANIC Organic & Biomolecular Chemistry Pub Date : 2024-06-12 DOI:10.1039/d4ob00459k
Md. Bakibillah , Sahin Reja , Kaushik Sarkar , Deboshmita Mukherjee , Dilip Sarkar , Sumana Roy , Tahani Mazyad Almutairi , Mohammad Shahidul Islam , Rajesh Kumar Das
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Abstract

A trio of Ir(iii) complexes that are held together by a picolinamidato moiety were created. In our earlier research, we demonstrated the catalytic activity of the complexes for producing alpha-alkylated ketones from a ketone or secondary alcohol with a primary alcohol in the presence of a catalytic amount of a Cp*Ir(iii) catalyst and tBuOK in toluene at 110 °C using the hydrogen-borrowing technique. Earlier many research groups had synthesized quinoline, pyrrole, and pyridine derivatives using 2-amino alcohol and ketone or secondary alcohol derivatives as starting materials, but in all those cases the reaction conditions are not suitable in terms of green synthesis like more catalyst loading, base loading, long reaction time, and high temperature. In addition, most of the reactions contain phosphine a hazardous by-product, along with the catalyst. Keeping in mind these shortcomings, we tried to expand the use of our catalysts after achieving an excellent result in our previous work, and we were successful in producing quinoline, pyrrole, and pyridine derivatives through acceptor-less dehydrogenative coupling (ADC) procedures at 90–110 °C under neat/solvent-free conditions and achieved good to exceptional yields of those nitrogen-containing heterocycles. This methodology is attractive because it is environmentally benign and allows for the “green” synthesis of nitrogen-containing heterocycles. All that is required is a modest quantity of catalyst and base, and the by-products are merely H2O and H2.

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通过 ADC 策略催化 Cp*Ir(III) 复合物无溶剂合成喹啉、吡咯和吡啶。
我们创造出了由一个吡啶脒基团连接在一起的三组铱(III)配合物。在早先的研究中,我们证明了这些配合物的催化活性,在催化量的 Cp*Ir(III) 催化剂和 tBuOK 的存在下,利用借氢技术在 110 ℃ 的甲苯中从酮或仲醇与伯醇生成α-烷基化酮。早些时候,许多研究小组以 2-氨基醇和酮或仲醇衍生物为起始原料合成了喹啉、吡咯和吡啶衍生物,但所有这些反应的条件都不适合绿色合成,如催化剂负载量多、碱负载量大、反应时间长和温度高。此外,大多数反应在使用催化剂的同时都会产生有害的副产品磷化氢。考虑到这些缺点,我们在之前的工作中取得了优异的成果,因此尝试扩大催化剂的使用范围。我们成功地在 90-110 °C 的纯净/无溶剂条件下,通过无受体脱氢偶联(ADC)程序生产出了喹啉、吡咯和吡啶衍生物,并获得了这些含氮杂环的良好甚至优异的产率。这种方法的吸引力在于它对环境无害,可以 "绿色 "合成含氮杂环。只需少量催化剂和碱,副产物仅为 H2O 和 H2。
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来源期刊
Organic & Biomolecular Chemistry
Organic & Biomolecular Chemistry 化学-有机化学
CiteScore
5.50
自引率
9.40%
发文量
1056
审稿时长
1.3 months
期刊介绍: The international home of synthetic, physical and biomolecular organic chemistry.
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