1287795-38-3Relevant academic research and scientific papers
Cooperative iron-bronsted acid catalysis: Enantioselective hydrogenation of quinoxalines and 2h-1,4-benzoxazines
Fleischer, Steffen,Zhou, Shaolin,Werkmeister, Svenja,Junge, Kathrin,Beller, Matthias
supporting information, p. 4997 - 5003 (2013/06/26)
The financial support from the state of Mecklenburg-Vorpommern and the Bundesministerium fur Bildung und Forschung (BMBF) is gratefully acknowledged. S.F. is thankful for the financial support of the Evonik Stiftung. We thank Dr. W. Baumann, Dr. C. Fische
Dihydrophenanthridine: A new and easily regenerable NAD(P)H model for biomimetic asymmetric hydrogenation
Chen, Qing-An,Gao, Kai,Duan, Ying,Ye, Zhi-Shi,Shi, Lei,Yang, Yan,Zhou, Yong-Gui
supporting information; experimental part, p. 2442 - 2448 (2012/03/10)
A new and easily regenerable NAD(P)H model 9,10-dihydrophenanthridine (DHPD) has been designed for biomimetic asymmetric hydrogenation of imines and aromatic compounds. This reaction features the use of hydrogen gas as terminal reductant for the regenerat
Convergent asymmetric disproportionation reactions: Metal/Bronsted acid relay catalysis for enantioselective reduction of quinoxalines
Chen, Qing-An,Wang, Duo-Sheng,Zhou, Yong-Gui,Duan, Ying,Fan, Hong-Jun,Yang, Yan,Zhang, Zhang
supporting information; experimental part, p. 6126 - 6129 (2011/06/22)
A convergent asymmetric disproportionation of dihydroquinoxalines for the synthesis of chiral tetrahydroquinoxalines using a metal/Bronsted acid relay catalysis system has been developed. The use of hydrogen gas as the reductant makes the convergent dispr
