Cooperative Lewis Acid/Cp*Co
<sup>III</sup>
Catalyzed C−H Bond Activation for the Synthesis of Isoquinolin‐3‐ones
作者:Ju Hyun Kim、Steffen Greßies、Frank Glorius
DOI:10.1002/anie.201601003
日期:2016.4.25
A facile route toward the synthesis of isoquinolin‐3‐ones through a cooperative B(C6F5)3‐ and Cp*CoIII‐catalyzed C−H bond activation of imines with diazo compounds is presented. The inclusion of a catalytic amount of B(C6F5)3 results in a highly efficient reaction, thus enabling unstable NH imines to serve as substrates.
提出了一种通过协同的B(C 6 F 5)3-和Cp * Co III催化的重氮化合物亚胺的CH键活化合成异喹啉-3-酮的简便方法。包含催化量的B(C 6 F 5)3导致高效反应,从而使不稳定的NH亚胺成为底物。
Tackling
<i>N</i>
‐Alkyl Imines with 3d Metal Catalysis: Highly Enantioselective Iron‐Catalyzed Synthesis of α‐Chiral Amines
作者:Clemens K. Blasius、Niklas F. Heinrich、Vladislav Vasilenko、Lutz H. Gade
DOI:10.1002/anie.202006557
日期:2020.9.7
catalyzes the highly enantioselective hydroboration of N‐alkyl imines. Employing a chiral bis(oxazolinylmethylidene)isoindoline pincer ligand, the asymmetric reduction of various acyclic N‐alkyl imines provided the corresponding α‐chiral amines in excellent yields and with up to >99 % ee. The applicability of this base metal catalytic system was further demonstrated with the synthesis of the pharmaceuticals
Disulfonimide‐Catalyzed Asymmetric Reduction of
<i>N</i>
‐Alkyl Imines
作者:Vijay N. Wakchaure、Philip S. J. Kaib、Markus Leutzsch、Benjamin List
DOI:10.1002/anie.201504052
日期:2015.9.28
A chiral disulfonimide (DSI)‐catalyzedasymmetric reduction of N‐alkyl imines with Hantzsch esters as a hydrogen source in the presence of Boc2O has been developed. The reaction delivers Boc‐protectedN‐alkyl amines with excellent yields and enantioselectivity. The method tolerates a large variety of alkyl amines, thus illustrating potential for a general reductive cross‐coupling of ketones with diverse
Fe(BF4)2·6H2O/2,6-pyridinedicarboxylic acid catalysed nitrosation of a wide variety of substituted styrenes has been developed in the presence of t-BuONO/NaBH4 under H2 pressure (10 bar) in MeOH–H2O (5 : 1) to afford corresponding oximes in good to excellent yields.