首页> 外文期刊>Journal of the American Chemical Society >Indium-catalyzed Annulation Of 2-aryl- And 2-heteroarylindoles With Propargyl Ethers: Concise Synthesis And Photophysical Properties Of Diverse Aryl- And Heteroaryl-annulated[a]carbazoles
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Indium-catalyzed Annulation Of 2-aryl- And 2-heteroarylindoles With Propargyl Ethers: Concise Synthesis And Photophysical Properties Of Diverse Aryl- And Heteroaryl-annulated[a]carbazoles

机译:铟基炔丙基醚催化的2-芳基和2-杂芳基吲哚的铟环化反应:芳基和杂芳基环氧基化的[a]咔唑的简明合成及其光物理性质

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摘要

Treatment of 2-aryl- and 2-heteroarylindoles with propargyl ethers in the presence of a catalytic amount of indium nonafluorobutanesulfonate [ln(ONf)_3] gave aryl- and heteroaryl-annulated[a]carbazoles in good yields. The synthetically attractive feature is reflected by its applicability to a wide range of 2-aryl-and 2-heteroarylindoles. In the annulation reaction, propargyl ethers act as C3 sources (HC≡C-CH_2OR). Among these, two carbon atoms are incorporated into the product as members of a newly constructed aromatic ring and the remaining carbon atom forms a methyl group on the aromatic ring, where the methyl group is always located next to the C3 position of the indole nucleus. The methyl group can be easily removed through SeO_2 oxidation followed by decarbonylation with RhCI(CO)(PPh_3)_2-Ph_2P(CH_2)_3PPh_2 as a catalyst. The new annulation strategy is applicable also to symmetrical dimers such as bithiophene and bifuran derivatives. Mechanistic studies suggest that the first step is addition reaction initiated by regioselective nucleophilic attack of the C3 of 2-aryl- and 2-heteroarylindoles to the internal carbon atom of the C≡C bond in propargyl ethers. The next stage is ring-closing S_N2 process kicking out the alkoxy group and then aromatization via a 1,3-hydrogen shift is the final step. The two carbon-carbon bond-forming reactions achieved in one-pot contribute largely to the reduction in the number of steps for the synthesis of aryl- and heteroaryl-annulated[a]carbazoles. Furthermore, utilization of the Fischer indole synthesis for efficient supply of the substrates, 2-aryl- and 2-heteroarylindoles, is another important factor shortening the overall process. The development of the annulation with a wide substrate scope provided a unique opportunity to evaluate photophysical properties of a series of aryl- and heteroaryl-annulated[a]-carbazoles. Almost all the compounds evaluated in this study were found to emit purple to green light in the visible region. Some interesting structure-property correlations are also described.
机译:在催化量的九氟丁基磺酸钠[ln(ONf)_3]存在下,用炔丙基醚处理2-芳基和2-杂芳基吲哚,得到的芳基和杂芳基环化的[a]咔唑的收率很高。合成上引人注目的特征是其广泛适用于2-芳基和2-杂芳基吲哚。在环化反应中,炔丙基醚充当C3源(HC≡C-CH_2OR)。其中,两个碳原子作为新构造的芳环的成员掺入产物中,剩余的碳原子在芳环上形成甲基,其中甲基始终位于吲哚核的C3位置附近。通过SeO_2氧化,然后用RhCl(CO)(PPh_3)_2-Ph_2P(CH_2)_3PPh_2作为催化剂脱羰,可以轻松除去甲基。新的环空策略也适用于对称的二聚体,例如联噻吩和联呋喃衍生物。机理研究表明,第一步是通过炔丙基醚中的2-芳基和2-杂芳基吲哚的C3对CgioC键的内部碳原子的区域选择性亲核攻击而引发的加成反应。下一阶段是闭环S_N2工艺,将烷氧基踢出,然后通过1,3-氢转移进行芳构化是最后一步。一锅内完成的两个碳-碳键形成反应在很大程度上减少了芳基和杂芳基环化[a]咔唑的合成步骤。此外,利用菲舍尔吲哚合成物来有效地供应底物2-芳基-和2-杂芳基吲哚是缩短整个过程的另一个重要因素。具有广泛的基材范围的环空的发展提供了独特的机会来评估一系列芳基和杂芳基环化的[a]-咔唑的光物理性质。发现几乎所有在这项研究中评估的化合物都在可见光区域发出紫色至绿色的光。还描述了一些有趣的结构属性相关性。

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