scholarly journals Iterative addition of carbon nucleophiles to N,N-dialkyl carboxamides for synthesis of α-tertiary amines

2021 ◽  
Author(s):  
Jiahua Chen ◽  
Jun Wei Lim ◽  
Derek Yiren Ong ◽  
Shunsuke Chiba

A protocol for the synthesis of α-tertiary amines was developed by iterative addition of carbon nucleophiles to N,N-dialkyl carboxamides. Nucleophilic 1,2-addition of organolithium reagents to carboxamides forms anionic tetrahedral carbinolamine...

2014 ◽  
Vol 10 ◽  
pp. 2981-2988 ◽  
Author(s):  
Joshua P Barham ◽  
Matthew P John ◽  
John A Murphy

Nucleophilic trapping of iminium salts generated via oxidative functionalisation of tertiary amines is well established with stabilised carbon nucleophiles. The few reports of organometallic additions have limited scope of substrate and organometallic nucleophile. We report a novel, one-pot methodology that functionalises N-substituted tetrahydroisoquinolines by visible light-assisted photooxidation, followed by trapping of the resultant iminium ions with organometallic nucleophiles. This affords 1,2-disubstituted tetrahydroisoquinolines in moderate to excellent yields.


Synlett ◽  
2014 ◽  
Vol 25 (10) ◽  
pp. 1453-1457 ◽  
Author(s):  
Akichika Itoh ◽  
Tomoaki Yamaguchi ◽  
Tomoya Nobuta ◽  
Norihiro Tada ◽  
Tsuyoshi Miura ◽  
...  

ChemInform ◽  
2014 ◽  
Vol 45 (50) ◽  
pp. no-no
Author(s):  
Tomoaki Yamaguchi ◽  
Tomoya Nobuta ◽  
Norihiro Tada ◽  
Tsuyoshi Miura ◽  
Tatsushi Nakayama ◽  
...  

2018 ◽  
Author(s):  
Dhananjayan Vasu ◽  
Ángel L. Fuentes de Arriba ◽  
Jamie Leitch ◽  
Antoine de Gombert ◽  
Darren J. Dixon

<i>A quinone-mediated general platform for the construction of primary α-tertiary amines from abundant primary α-branched amine starting materials is described. This procedure pivots on the efficient in situ generation of reactive ketimine intermediates and subsequent reaction with carbon-centered nucleophiles such as organomagnesium and organolithium reagents, and TMSCN, creating quaternary centers. Furthermore, extension to reverse polarity photoredox catalysis enables reactivity with electrophiles. This efficient, broadly applicable and scalable amine-to-amine synthetic platform was successfully applied to library and API synthesis and in the late stage functionalization of drug molecules. </i><br>


2017 ◽  
Vol 53 (10) ◽  
pp. 1708-1711 ◽  
Author(s):  
Jing-Kun Xu ◽  
Sheng-Jun Li ◽  
Hai-Yang Wang ◽  
Wen-Cong Xu ◽  
Shi-Kai Tian

With 2-(trimethylsilyl)aryl triflates as aryne precursors, the title reaction proceeds smoothly to afford functionalized tertiary amines under transition metal-free conditions.


2018 ◽  
Author(s):  
Dhananjayan Vasu ◽  
Ángel L. Fuentes de Arriba ◽  
Jamie Leitch ◽  
Antoine de Gombert ◽  
Darren J. Dixon

<i>A quinone-mediated general platform for the construction of primary α-tertiary amines from abundant primary α-branched amine starting materials is described. This procedure pivots on the efficient in situ generation of reactive ketimine intermediates and subsequent reaction with carbon-centered nucleophiles such as organomagnesium and organolithium reagents, and TMSCN, creating quaternary centers. Furthermore, extension to reverse polarity photoredox catalysis enables reactivity with electrophiles. This efficient, broadly applicable and scalable amine-to-amine synthetic platform was successfully applied to library and API synthesis and in the late stage functionalization of drug molecules. </i><br>


RSC Advances ◽  
2013 ◽  
Vol 3 (26) ◽  
pp. 10189 ◽  
Author(s):  
Tomoya Nobuta ◽  
Akitoshi Fujiya ◽  
Tomoaki Yamaguchi ◽  
Norihiro Tada ◽  
Tsuyoshi Miura ◽  
...  

Synlett ◽  
1991 ◽  
Vol 1991 (09) ◽  
pp. 697-698 ◽  
Author(s):  
Tadakatsu Mandai ◽  
Hiroaki Kunitomi ◽  
Kiyoto Higashi ◽  
Mikio Kawada ◽  
Jiro Tsuji

2019 ◽  
Author(s):  
Leiyang Lv ◽  
Dianhu Zhu ◽  
Zihang Qiu ◽  
Jianbin Li ◽  
Chao-Jun Li

Hydroalkylation of unsaturated hydrocarbons with unstablized carbon nucleophiles is difficult and remains a major challenge. The disclosed examples so far mainly focused on the involvement of heteroatom and/or stabilized carbon nucleophiles as efficient reaction partners. Reported here is an unprecedented regioselective nickel-catalyzed hydroalkylation of 1,3-dienes with hydrazones, generated in situ from abundant aryl aldehydes and ketones and acted as both the sources of unstabilized carbanions and hydride. With this strategy, both terminal and sterically hindered internal dienes are hydroalkylated efficiently in a highly selective manner, thus providing a novel and reliable catalytic method to construct challenging C(sp3)-C(sp3) bonds.


2019 ◽  
Author(s):  
Christopher J. Legacy ◽  
Frederick T. Greenaway ◽  
Marion Emmert

We report detailed mechanistic investigations of an iron-based catalyst system, which allows the α-C-H oxidation of a wide variety of amines, including acyclic tertiary aliphatic amines, to afford dealkylated or amide products. In contrast to other catalysts that affect α-C-H oxidations of tertiary amines, the system under investigation employs exclusively peroxy esters as oxidants. More common oxidants (e.g. tBuOOH) previously reported to affect amine oxidations via free radical pathways do not provide amine α-C-H oxidation products in combination with the herein described catalyst system. Motivated by this difference in reactivity to more common free radical systems, the investigations described herein employ initial rate kinetics, kinetic profiling, Eyring studies, kinetic isotope effect studies, Hammett studies, ligand coordination studies, and EPR studies to shed light on the Fe catalyst system. The obtained data suggest that the catalytic mechanism proceeds through C-H abstraction at a coordinated substrate molecule. This rate-determining step occurs either at an Fe(IV) oxo pathway or a 2-electron pathway at a Fe(II) intermediate with bound oxidant. We further show via kinetic profiling and EPR studies that catalyst activation follows a radical pathway, which is initiated by hydrolysis of PhCO3 tBu to tBuOOH in the reaction mixture. Overall, the obtained mechanistic data support a non-classical, Fe catalyzed pathway that requires substrate binding, thus inducing selectivity for α-C-H functionalization.<br>


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