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去芳构化[2 + 2]环加成和 o-碳硼烷与吲哚的形式 C-H 插入反应:碳硼烷功能化杂环的合成。

Dearomative [2 + 2] Cycloaddition and Formal C-H Insertion Reaction of o-Carboryne with Indoles: Synthesis of Carborane-Functionalized Heterocycles.

机构信息

Department of Chemistry and State Key Laboratory of Synthetic Chemistry, The Chinese University of Hong Kong, Shatin, New Territories, Hong Kong, China.

出版信息

J Am Chem Soc. 2015 Jul 29;137(29):9423-8. doi: 10.1021/jacs.5b05426. Epub 2015 Jul 20.

Abstract

o-Carboryne (1,2-dehydro-o-carborane) is a very useful synthon for the synthesis of a variety of carborane-functionalized heterocycles. Reaction of o-carboryne with N-protected indoles gave carborane-fused indolines if the protecting group was TMS via dearomative [2 + 2] cycloaddition or carboranyl indoles for N-alkyl ones through formal C-H insertion reaction. For N-aryl indoles, both reactions were observed, giving two products, in which the product ratio was dependent upon the nature of the substituents on the aryl rings. In general, electron-withdrawing substituents favor [2 + 2] cycloaddition, whereas electron-donating substituents promote a formal C-H insertion pathway. This reaction is also compatible with other heteroaromatics. Thus, a stepwise reaction mechanism was proposed to account for the experimental observations. These protocols offer general and efficient methods for the preparation of carborane-functionalized indoles and indolines as well as other heterocycles. The observed dearomative [2 + 2] cycloaddition represents the first example of indoles to undergo such reaction in the absence of transition metals or without UV irradiation. All new compounds were fully characterized by (1)H, (13)C, and (11)B NMR spectroscopy as well as HRMS spectrometry. Some were further confirmed by single-crystal X-ray analyses.

摘要

邻二碳硼烷(1,2-去氢邻二碳硼烷)是合成各种碳硼烷功能化杂环的非常有用的合成子。邻二碳硼烷与 N-保护吲哚反应,如果保护基为 TMS,则通过非芳香性[2+2]环加成生成碳硼烷稠合的吲哚啉,如果为 N-烷基,则通过形式 C-H 插入反应生成碳硼烷基吲哚。对于 N-芳基吲哚,两种反应都观察到,生成两种产物,其产物比取决于芳环上取代基的性质。一般来说,吸电子取代基有利于[2+2]环加成,而供电子取代基则促进形式 C-H 插入途径。该反应也与其他杂芳烃兼容。因此,提出了逐步反应机理来解释实验观察结果。这些方案为制备碳硼烷功能化吲哚和吲哚啉以及其他杂环提供了通用且有效的方法。所观察到的非芳香性[2+2]环加成代表了在没有过渡金属或没有紫外线照射的情况下吲哚发生此类反应的第一个例子。所有新化合物均通过(1)H、(13)C 和(11)B NMR 光谱以及高分辨率质谱法(HRMS 光谱法)进行了充分表征。一些化合物通过单晶 X 射线分析进一步得到了证实。

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