二亚硝酸钠对3/5-(2-硝基苯)- 1h -吡唑的无过渡金属一锅串联化学选择性还原和环化。

IF 2.9 3区 化学 Q1 CHEMISTRY, ORGANIC
Danaboina Srikanth, Gayatri Diliprao Shejul, Swanand Vinayak Joshi, Abdul Kalam, Avvaru Subha Jahnavi, Amol G Dikundwar, Sidharth Chopra, Madhavi Venkata Yaddanapudi, Srinivas Nanduri
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引用次数: 0

摘要

研究了二亚硫酸钠(Na2S2O4)介导的5-(2-硝基苯基)- 1h -吡唑与醛/二硫化碳的串联化学选择性还原环化反应,以合成吡唑[1,5-c]喹唑啉。该方案包括一锅原位还原5-(2-硝基苯)- 1h -吡唑,然后与醛或二硫化碳进行分子间环化,得到吡唑[1,5-c]喹唑啉。该方案进一步扩展为由3-(2-硝基苯基)-1-苯基- 1h -吡唑-4-乙醛通过一锅原位还原和分子内环化合成吡唑[4,3-c]喹啉。值得注意的是,使用Na2S2O4作为还原剂可以实现金属,配体和无添加剂的方法,广泛的底物范围,以及克级的可扩展性。合成的化合物在ACN和MeOH中进行了光物理性质的研究,其中含有一个供电子的甲氧基的化合物7c表现出较大的色移。值得注意的是,吡唑啉[1,5-c]喹唑啉-5(6H)-硫酮衍生物5a和5d对金黄色葡萄球菌具有选择性抑制作用,最低抑制浓度(mic)分别为2和4 μg mL-1。通过ESI-MS和DFT研究鉴定了关键中间体,并阐明了合理的反应机理。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Transition metal-free one-pot tandem chemoselective reduction and cyclization of 3/5-(2-nitrophenyl)-1H-pyrazoles using sodium dithionite.

A sodium dithionite (Na2S2O4) mediated tandem chemoselective reductive cyclization of 5-(2-nitrophenyl)-1H-pyrazoles with aldehydes/carbon disulfide is developed for the synthesis of pyrazolo[1,5-c]quinazolines. The protocol involves one pot in situ reduction of 5-(2-nitrophenyl)-1H-pyrazoles, followed by intermolecular cyclization with aldehydes or carbon disulfide to afford the pyrazolo[1,5-c]quinazolines. The protocol is further expanded for the synthesis of pyrazolo[4,3-c]quinolines from 3-(2-nitrophenyl)-1-phenyl-1H-pyrazole-4-carbaldehyde via one pot in situ reduction followed by intramolecular cyclization. Notably, the use of Na2S2O4 as the reducing agent enables a metal, ligand, and additive-free approach, wide substrate scope, and scalability up to gram scale. The synthesized compounds were studied for photophysical properties in ACN and MeOH, the compound 7c, which contains an electron-donating methoxy group, exhibited a greater bathochromic shift. Notably, the pyrazolo[1,5-c]quinazoline-5(6H)-thione derivatives 5a and 5d demonstrated selective inhibition of Staphylococcus aureus, with minimum inhibitory concentrations (MICs) of 2 and 4 μg mL-1, respectively. ESI-MS and DFT studies were conducted for the identification of the key intermediates and to elucidate the plausible reaction mechanism.

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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: Organic & Biomolecular Chemistry is an international journal using integrated research in chemistry-organic chemistry. Founded in 2003 by the Royal Society of Chemistry, the journal is published in Semimonthly issues and has been indexed by SCIE, a leading international database. The journal focuses on the key research and cutting-edge progress in the field of chemistry-organic chemistry, publishes and reports the research results in this field in a timely manner, and is committed to becoming a window and platform for rapid academic exchanges among peers in this field. The journal's impact factor in 2023 is 2.9, and its CiteScore is 5.5.
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