使用三氯异氰尿酸(TCCA)†的萘酚,喹啉酚和异喹啉酚衍生物的原子高效氯化脱芳化

IF 2.7 3区 化学 Q1 CHEMISTRY, ORGANIC
Jenna D. Caudle, Marlow K. Ennis, Dillon C. Dodge, Audrey A. Iskandar, Yesenia Portillo Urquiza, David K. Seo, Franklyn M. Wright, Gordon H. Purser, Daniele Leonori and Angus A. Lamar
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引用次数: 0

摘要

以三氯异氰尿酸(TCCA)为原子经济型氯化剂,在平面支架上以中高收率制备了多种脱芳化合物。该方法具有广泛的功能,可以在几种绿色和/或可持续溶剂中进行。报告了21个脱芳化2-萘酚和类似的杂芳烃(喹啉醇、异喹啉醇和喹唑啉醇)的1,1-二氯产物以及5个单氯脱芳化产物的例子。在绿色溶剂中进行了两步一锅反应,证明了1,1-二氯萘酮产品作为反应中间体的效用。在一项机制研究中,氯化剂在氯转移之前与平面支架的羟基取代基的配位是有关联的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Atom-efficient chlorinative dearomatization of naphthol, quinolinol, and isoquinolinol derivatives using trichloroisocyanuric acid (TCCA)†

Atom-efficient chlorinative dearomatization of naphthol, quinolinol, and isoquinolinol derivatives using trichloroisocyanuric acid (TCCA)†

A variety of dearomatized compounds have been prepared in moderate to excellent yields from planar scaffolds using trichloroisocyanuric acid (TCCA) as an atom-economical chlorinating agent. The method tolerates a broad range of functionalities and can take place in several green and/or sustainable solvents. Twenty-one examples of 1,1-dichlorinated products of dearomatized 2-naphthols and analogous heteroarenes (quinolinols, isoquinolinols, and quinazolinol) are reported along with five examples of monochlorinated dearomatized products. The utility of the 1,1-dichloronaphthalenone product as a reactive intermediate species is demonstrated in a two-step, one-pot reaction carried out in a green solvent. In a mechanistic investigation, the coordination of the chlorinating agent to the hydroxy substituent of the planar scaffold prior to chlorine transfer is implicated.

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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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