indole synthesis
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2022 ◽  
Author(s):  
Jiechun Liu ◽  
Haojiang Lin ◽  
Huanfeng Jiang ◽  
Liangbin Huang

2021 ◽  
Vol 2021 ◽  
pp. 1-12
Author(s):  
Petr Halaš ◽  
Juraj Kuchár ◽  
Radovan Herchel

Two mononuclear Cu(II) complexes, [Cu(phen)2(HL)]ClO4·H2O·2DMF (1) and [Cu(phen)2(HL)2]·EtOH (2), comprising 1,10-phentantroline (phen) and 2-(1H-tetrazol-5-yl)-1H-indole ligand (H2L) ligands are reported. Analysis and characterization of the samples were performed using standard physicochemical techniques, elemental analysis, nuclear magnetic resonance, Fourier transform infrared spectroscopy, and UV-vis spectroscopy. Single-crystal X-ray crystallography revealed the formation of a pentacoordinate complex in 1 and a hexacoordinate complex in 2, in which the anionic ligand HL− has undergone monodentate coordination through the tetrazole unit. Furthermore, the crystal structure of H2L·MeOH is also discussed. The potential application of compounds 1 and 2 in bioinorganic chemistry was addressed by investigating their radical scavenging activity with the 2,2-diphenyl-1-picrylhydrazyl radical (DPPH) and the results were supported also by theoretical calculations.


2021 ◽  
Vol 23 (19) ◽  
pp. 7561-7565
Author(s):  
Jianjun Wang ◽  
Xiaofeng Sun ◽  
Daguo Hu ◽  
Yian Shi
Keyword(s):  

Catalysts ◽  
2021 ◽  
Vol 11 (9) ◽  
pp. 1018
Author(s):  
Ayesha ◽  
Muhammad Bilal ◽  
Nasir Rasool ◽  
Samreen Gul Khan ◽  
Umer Rashid ◽  
...  

As part of natural products or biologically active compounds, the synthesis of nitrogen-containing heterocycles is becoming incredibly valuable. Palladium is a transition metal that is widely utilized as a catalyst to facilitate carbon-carbon and carbon-heteroatom coupling; it is used in the synthesis of various heterocycles. This review includes the twelve years of successful indole synthesis using various palladium catalysts to establish carbon-carbon or carbon-nitrogen coupling, as well as the conditions that have been optimized.


2021 ◽  
Author(s):  
AKira Kabuki ◽  
Junichiro Yamaguchi

The dictyodendrins are a family of marine alkaloids, which possess a highly substituted pyrrolo[2,3-<i>c</i>]carbazole core. This core structure can be regarded as a multi-substituted indole and aniline moiety. To achieve a concise synthesis of dictyodendrins, we planned to capitalize on our previously developed multi-substituted indole synthesis. By using this method along with two C–H functionalizations, formal syntheses of dictyodendrin B, C, and E were achieved.


2021 ◽  
Author(s):  
AKira Kabuki ◽  
Junichiro Yamaguchi

The dictyodendrins are a family of marine alkaloids, which possess a highly substituted pyrrolo[2,3-<i>c</i>]carbazole core. This core structure can be regarded as a multi-substituted indole and aniline moiety. To achieve a concise synthesis of dictyodendrins, we planned to capitalize on our previously developed multi-substituted indole synthesis. By using this method along with two C–H functionalizations, formal syntheses of dictyodendrin B, C, and E were achieved.


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