B(C6F5)3-Catalyzed tandem cyclization/hydrosilylation for the step-economical construction of 1,2,3,4-tetrahydroquinoxalines from readily available starting materials has been developed.
B(C6F5)3催化的串联环化/氢硅烷化反应,可从易得的起始物构建1,2,3,4-四氢喹啉。
A General and Practical Access to Chiral Quinoxalinones with Low Copper-Catalyst Loading
A general, straightforward, and practicalaccess to multi-substituted chiral quinoxalin-2-ones has been achieved based on the copper(I) chloride-dimethylethylenediamine (DMEDA) catalyst system. With the use of 1 mol% copper(I) chloride, structurally diverse quinoxalin-2-ones were generated with high optical purity from readily available starting materials, 2-haloanilines and α-amino acids, in a one-pot
Iron- or Zinc-Mediated Synthetic Approach to Enantiopure Dihydroquinoxalinones
作者:Dazhi Li、Thierry Ollevier
DOI:10.1002/ejoc.201801639
日期:2019.2.14
A general and efficient synthesis of dihydroquinoxalinones has been developed. The reductive cyclization of N‐(o‐nitroaryl)amino esters was performed by using iron and zinc metal under mild conditions in a water/ethyl acetate mixture. The final products were obtained in moderate to high yields and high enantiomeric purity.
(S)-Mandelate-Mediated Dynamic Kinetic Resolution of α-Bromo Esters for Asymmetric Syntheses of Aminoflavones, Dihydroquinoxalinones and Dihydrobenzoxazinones
作者:Yong Sun Park、Yoon Min Lee
DOI:10.3987/com-09-11700
日期:——
(S)-Mandelate-mediated dynamickineticresolution of α-bromoesters in nucleophilicsubstitution reaction has been investigated. Reactions of various aryl amine nucleophiles in the presence of TBAI and DIEA can provide the substitution products 2 and 7-19 up to 95% yield and 96:4 dr. Also, the simple procedure with spontaneous removal of the chiral auxiliary provides a practical protocol for asymmetric
Diversity-Oriented Synthesis as a Strategy for Fragment Evolution against GSK3β
作者:Yikai Wang、Jean-Yves Wach、Patrick Sheehan、Cheng Zhong、Chenyang Zhan、Richard Harris、Steven C. Almo、Joshua Bishop、Stephen J. Haggarty、Alexander Ramek、Kayla N. Berry、Conor O’Herin、Angela N. Koehler、Alvin W. Hung、Damian W. Young
DOI:10.1021/acsmedchemlett.6b00230
日期:2016.9.8
fragment-based drug discovery (FBDD) relies heavily on structural analysis of the hits bound to their targets. Herein, we present a complementary approach based on diversity-oriented synthesis (DOS). A DOS-based fragment collection was able to produce initial hit compounds against the target GSK3β, allow the systematic synthesis of related fragment analogues to explore fragment-level structure–activity relationship