1253744-44-3Relevant academic research and scientific papers
Transition metal-free α-C(sp3)-H bond functionalization of amines by oxidative cross dehydrogenative coupling reaction: Simple and direct access to C-4-alkylated 3,4-dihydroquinazoline derivatives
Kumar, R. Arun,Saidulu,Prasad, K. Rajendra,Kumar, G. Sathish,Sridhar,Reddy, K. Rajender
, p. 2985 - 2991 (2012)
A transition metal-free catalytic system has been developed for the cross dehydrogenative coupling of amines with nitroalkanes under mild condition employing potassium iodide/tert-butyl hydrogen peroxide catalytic system. This methodology was further extended for the construction of biologically important N-heterocycles, namely, 3,4-dihydroquinazoline derivatives. This novel strategy provides a simple, efficient, and direct access to 4-alkyl-3,4- dihydroquinazoline derivatives. Copyright
Highly stable and porous cross-linked polymers for efficient photocatalysis
Xie, Zhigang,Wang, Cheng,DeKrafft, Kathryn E.,Lin, Wenbin
supporting information; experimental part, p. 2056 - 2059 (2011/04/16)
Porous cross-linked polymers (PCPs) with phosphorescent [Ru(bpy) 3]2+ and [Ir(ppy)2(bpy)]+ building blocks were obtained via octacarbonyldicobalt (Co2(CO) 8)-catalyzed alkyne trimerization
Magnetically recoverable iron nanoparticle catalyzed cross-dehydrogenative coupling (CDC) between two Csp3-H bonds using molecular oxygen
Zeng, Tieqiang,Song, Gonghua,Moores, Audrey,Li, Chao-Jun
experimental part, p. 2002 - 2008 (2010/09/18)
The oxidative C-C bond formations between Csp3-H bond adjacent to nitrogen and Csp3-H bond of nitroalkanes are catalyzed efficiently by magnetically recoverable iron nanoparticles using oxygen. The catalyst can be magnetically remove
