首页> 外文期刊>The Journal of Organic Chemistry >Iron-Promoted Intramolecular Cascade Cyclization for the Synthesis of Selenophene-Fused, Quinoline-Based Heteroacenes
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Iron-Promoted Intramolecular Cascade Cyclization for the Synthesis of Selenophene-Fused, Quinoline-Based Heteroacenes

机译:铁促进的分子内级联环化用于合成硒融合,喹啉基异丙烯

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Herein, we report the Fe(III)-promoted linear intramolecular cascade cyclization of 1,3-diyne and 1,3,5-triyne for the construction of selenophene-fused, quinoline-based heteroacene scaffolds. In one step, 1,3-diyne and 1,3,5-triyne were cyclized via diversified internal nucleophiles by using diorganyl diselenides. The diorganyl diselenide plays dual role, one as a cyclizing agent and second as insertion of one and/or two selenium atom and one R'-Se group in the final product. This is highly important in terms of atom economy. Diversified internal nucleophiles were used to afford quinoline- and acridine-based cores. The synthesized selenophene-fused derivatives showed lambda(max), F-max, and Phi(f) values in the range from 370-411 nm, 427-472 nm, and 0.003-0.059, respectively, in dichloromethane solvent.
机译:在此,我们将Fe(III)的-PROMOTed线性分子内梯度梯环梯环化为1,3- yiyne和1,3,5-Triyne用于施工硒融合,喹啉的杂环烷支架。 在一步中,通过使用二氧化二氢化物通过多元化的内核来环化1,3-二炔和1,3,5-三炔。 二氧化二烯酯在最终产物中发挥双重作用,一种作为旋滑剂,作为插入一个和/或两种硒原子和一个R'-Se组。 这在原子经济方面非常重要。 多样化的内部亲核试剂用于提供基于喹啉和吖啶的核心。 合成的硒丁烯丁衍生物显示出在二氯甲烷溶剂中的370-411nm,427-472nm和0.003-0.059的范围内的Lambda(Max),F-Max和Phi(F)值。

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