Visible-light-induced photocatalyst- and metal-free radical phosphinoyloximation of alkenes with tert-butyl nitrite as bifunctional reagent

IF 8.9 1区 化学 Q1 CHEMISTRY, MULTIDISCIPLINARY Chinese Chemical Letters Pub Date : 2024-10-15 DOI:10.1016/j.cclet.2024.110425
Huaixiang Yang , Miao-Miao Li , Aijun Zhang , Jiefei Guo , Yongqi Yu , Wei Ding
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Abstract

The tert-butyl nitrite as a bifunctional reagent mediated radical alkene difunctionalization has emerged as a powerful strategy for synthesis of structurally diverse oxime-containing compounds. However, the phosphorus-centered radical initiated transformations remain largely elusive. Herein, a visible-light-induced radical phosphinoyloximation of alkenes with secondary phosphine oxides and tert-butyl nitrite has been developed under photocatalyst- and metal-free conditions. This protocol features mild conditions, broad substrate scope, good functional tolerance, and operational simplicity, yielding a diverse array of α-phosphinoyl oximes in moderate to good yields with high stereoselectivities. The photomediated homolytic cleavage of ONO bond of tert-butyl nitrite generates the reactive tert-butoxyl radical and persistent NO radical to act as both HAT reagent and the source of oximes.

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以亚硝基叔丁酯为双功能试剂的可见光诱导烯烃光催化和金属自由基磷酸酰肟化反应
亚硝酸盐叔丁基作为一种双功能试剂介导的自由基烯烃双官能化反应已成为合成结构多样的含肟化合物的有力手段。然而,以磷为中心的自由基引发的转化在很大程度上仍然难以捉摸。本文在无光催化剂和无金属的条件下,研究了烯烃与仲膦氧化物和亚硝基叔丁酯的可见光诱导自由基磷酰化反应。该工艺条件温和,底物范围广,功能耐受性好,操作简单,能以中高收率和高立体选择性制备多种α-膦酰肟。亚硝酸盐叔丁基ONO键的光介导均解裂解产生活性叔丁基自由基和持久性NO自由基,既是HAT试剂,又是肟的来源。
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来源期刊
Chinese Chemical Letters
Chinese Chemical Letters 化学-化学综合
CiteScore
14.10
自引率
15.40%
发文量
8969
审稿时长
1.6 months
期刊介绍: Chinese Chemical Letters (CCL) (ISSN 1001-8417) was founded in July 1990. The journal publishes preliminary accounts in the whole field of chemistry, including inorganic chemistry, organic chemistry, analytical chemistry, physical chemistry, polymer chemistry, applied chemistry, etc.Chinese Chemical Letters does not accept articles previously published or scheduled to be published. To verify originality, your article may be checked by the originality detection service CrossCheck.
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