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非血红素锰催化的叔酰胺氧化脱烷基化反应:锰(IV)-氧代氨基吡啶阳离子自由基物种及氢化物转移机制

Nonheme Manganese-Catalyzed Oxidative -Dealkylation of Tertiary Amides: Manganese(IV)-Oxo Aminopyridine Cation Radical Species and Hydride Transfer Mechanism.

作者信息

Wu Chunxia, Wang Shoujun, Sun Dongru, Chen Jie, Ji Wenhua, Wang Yong, Nam Wonwoo, Wang Bin

机构信息

School of Chemistry and Chemical Engineering, University of Jinan, Jinan 250022, China.

Institute of Drug Discovery Technology, Ningbo University, Ningbo 315211, China.

出版信息

J Am Chem Soc. 2025 Apr 2;147(13):11432-11445. doi: 10.1021/jacs.5c01391. Epub 2025 Mar 19.

Abstract

The development of efficient and practical -dealkylation reactions stands as a longstanding objective in synthetic chemistry. Inspired by the oxidative -dealkylation reactions mediated by heme and nonheme metalloenzymes, we disclose a biomimetic oxidative -dealkylation catalysis that utilizes a nonheme manganese complex bearing anthryl-appended aminopyridine ligand and hydrogen peroxide (HO) as the terminal oxidant. A variety of Weinreb amides and cyclic aliphatic amines are efficiently transformed into valuable methyl hydroxamates and ω-amino acids through oxidative C-N bond cleavage. Mechanistic studies, including density functional theory (DFT) calculations, reveal that a manganese(IV)-oxo aminopyridine cation radical species, which is formed via the bromoacetic acid-assisted heterolytic O-O bond cleavage of a presumed manganese(III)-hydroperoxo aminopyridine species and the subsequent intramolecular electron transfer (ET) from the anthryl group of the aminopyridine ligand to the manganese center, is the active intermediate that initiates the oxidative -dealkylation reactions; this process is reminiscent to the heterolytic O-O bond cleavage of iron(III)-hydroperoxo porphyrin intermediates (Cpd 0) to form iron(IV)-oxo porphyrin π-cation radicals (Cpd I) that are responsible for diverse selective oxidation reactions. Moreover, it is revealed that the oxidative activation of the C-H bond adjacent to the nitrogen atom proceeds via a hydride transfer (HT) mechanism, which involves a concerted asynchronous proton-coupled electron transfer (PCET), followed by an ET process. Thus, this study reports the first instance of catalytic oxidative -dealkylation of a variety of tertiary amides, such as Weinreb amides and cyclic aliphatic amines, mediated by a Cpd I-like nonheme manganese(IV)-oxo aminopyridine cation radical species via an initial HT pathway.

摘要

高效实用的脱烷基化反应的发展一直是合成化学领域的长期目标。受血红素和非血红素金属酶介导的氧化脱烷基化反应的启发,我们报道了一种仿生氧化脱烷基化催化反应,该反应利用了一种带有蒽基取代氨基吡啶配体的非血红素锰配合物,并以过氧化氢(HO)作为终端氧化剂。通过氧化C-N键断裂,多种N-甲氧基-N-甲基酰胺和环状脂肪胺被高效转化为有价值的甲基异羟肟酸和ω-氨基酸。包括密度泛函理论(DFT)计算在内的机理研究表明,锰(IV)-氧代氨基吡啶阳离子自由基物种是引发氧化脱烷基化反应的活性中间体,它是通过溴乙酸辅助的假定锰(III)-氢过氧氨基吡啶物种的异裂O-O键断裂以及随后氨基吡啶配体的蒽基向锰中心的分子内电子转移(ET)形成的;这一过程类似于铁(III)-氢过氧卟啉中间体(化合物0)的异裂O-O键断裂,形成负责多种选择性氧化反应的铁(IV)-氧代卟啉π-阳离子自由基(化合物I)。此外,研究表明与氮原子相邻的C-H键的氧化活化通过氢化物转移(HT)机制进行,该机制涉及协同异步质子耦合电子转移(PCET),随后是电子转移过程。因此,本研究报道了首例由类似化合物I的非血红素锰(IV)-氧代氨基吡啶阳离子自由基物种通过初始HT途径介导的多种叔酰胺(如N-甲氧基-N-甲基酰胺和环状脂肪胺)的催化氧化脱烷基化反应。

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