Exploring a metal/base-free porphyrin involving a carboxyl-functionalized pyridine moiety for photocatalytic N-arylation of benzamide validated using RSM†

IF 2.9 3区 化学 Q1 CHEMISTRY, ORGANIC Organic & Biomolecular Chemistry Pub Date : 2025-01-17 DOI:10.1039/D4OB01707B
Bhairav Chandroday Mataghare and Pundlik Rambhau Bhagat
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Abstract

A porphyrin comprising a carboxyl-functionalized pyridine moiety was synthesized and characterized using 1H NMR, 13C NMR, FT-IR, powder-XRD, BET, ICP-MS, SEM and EDAX. The proton level (H0 = 1.19) and energy band gap (1.39 eV) were determined via UV-Vis spectrophotometry. The UV-visible and fluorescence emission spectra indicated the absorption window of the porphyrin photocatalyst with a distinct Soret band at 424 nm and four Q-bands at 517, 558, 595, and 649 nm. The existence of four Q-bands, the powder XRD data and the ICP-MS analysis supported the absence of metal in the porphyrin photocatalyst. The best photocatalytic conditions generated using Box–Behnken design of RSM (0.2 mol% PcCFP, 5 W LED, 1 : 1.2 ArX : ArCONH2, 24 h) were confirmed through the model reaction of benzamide and 1-bromo-4-nitrobenzene. The N-arylation of benzamide was achieved in a custom-built photoreactor at ambient conditions under exposure to 5 W LED light. Different ArX compounds comprising electron-repelling and electron-attracting groups were assessed to test the potential of the photocatalyst. The porphyrin was found to exhibit significant catalytic activity for C–N bond formation, resulting in 21–73% yields of the substituted benzanilide products. The N-arylated benzamide formation was confirmed using 1H NMR, 13C NMR, HR-MS and SC-XRD. Additionally, heteroaryl halides such as 2-bromo-, 3-bromo-, and 4-bromo-pyridine, as well as 2-chloro-4-methylpyridine, were also found to be compatible and provided admirable yields (28–67%). The stability and heterogeneous nature of the porphyrin photocatalyst were confirmed using FT-IR. The stability of the photocatalyst after the sixth run was demonstrated by the slight decline in the yield of the product from 71 to 67%. The formation of an aryl radical was detected using the scavenger TEMPO, which led to the achievement of N-arylated benzamides containing intermediates of industrial drugs.

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探索一种含羧基功能化吡啶的金属/无碱卟啉,用于光催化苯酰胺n -芳基化。
合成了一种含有羧基功能化吡啶的卟啉,并用1H NMR、13C NMR、FT-IR、粉末xrd、BET、ICP-MS、SEM和EDAX对其进行了表征。紫外可见分光光度法测定了质子能级(H0 = 1.19)和能带隙(1.39 eV)。紫外可见光谱和荧光发射光谱表明,卟啉光催化剂的吸收窗口在424 nm处有明显的Soret波段,在517、5558、595和649 nm处有四个q波段。四个q波段的存在、粉末XRD数据和ICP-MS分析均支持卟啉光催化剂中不含金属。通过苯甲酰胺与1-溴-4-硝基苯的模型反应,确定了采用Box-Behnken设计的最佳光催化条件(0.2 mol% PcCFP, 5 W LED, 1:1 .2 ArX: ArCONH2, 24 h)。苯甲酰胺的n -芳基化是在一个定制的光反应器中在环境条件下在5w LED光下完成的。评估了包含电子排斥和电子吸引基团的不同ArX化合物,以测试光催化剂的潜力。卟啉对C-N键的形成具有显著的催化活性,取代苯并苯胺的产率为21-73%。通过1H NMR、13C NMR、HR-MS和SC-XRD等手段证实了n -芳基化苯酰胺的生成。此外,异芳基卤化物如2-溴-、3-溴-和4-溴吡啶,以及2-氯-4-甲基吡啶也被发现是相容的,并提供了令人满意的产率(28-67%)。利用傅里叶变换红外光谱(FT-IR)对卟啉光催化剂的稳定性和非均相性质进行了表征。第六次循环后,光催化剂的收率从71%略微下降到67%,证明了光催化剂的稳定性。使用TEMPO清道夫检测芳基自由基的形成,从而获得含有工业药物中间体的n -芳基化苯酰胺。
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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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