1549705-36-3Relevant academic research and scientific papers
Palladium-catalyzed oxidative deacetonative coupling of 4-aryl-2-methyl-3-butyn-2-ols with H-phosphonates
Li, Xiang,Sun, Suyan,Yang, Fan,Kang, Jianxun,Wu, Yusheng,Wu, Yangjie
, p. 2432 - 2436 (2015)
An efficient and generally applicable protocol for palladium-catalyzed oxidative deacetonative coupling of 4-aryl-2-methyl-3-butyn-2-ols with dialkyl H-phosphonates has been developed. This methodology provides a new and practical route to alkynylphosphonates using the inexpensive 4-aryl-2-methyl-3-butyn-2-ols as the alkyne sources. This reaction could also be performed with aryl bromides, 2-methyl-3-butyne-2-ol and dialkyl H-phosphonates using the cheap 2-methyl-3-butyne-2-ol as an alkyne source. This journal is
Aerobic oxidative alkynylation of H-phosphonates and amides: An efficient route for the synthesis of alkynylphosphonates and ynamides using a recyclable Cu-MnO catalyst
Singh, Harshvardhan,Sahoo, Tapan,Sen, Chiranjit,Galani, Sunil M.,Ghosh, Subhash Chandra
, p. 1691 - 1698 (2019/04/08)
An atom-economical and efficient route for the synthesis of alkynylphosphonates and ynamides by aerobic oxidative alkynylation of H-phosphonates and amides with both aliphatic and aromatic alkynes using our synthesized recyclable heterogeneous Cu-MnO catalyst has been developed. The phosphorylation was carried out under base- and ligand-free conditions, and in the presence of air as the sole oxidant. The reaction is compatible with a wide variety of functional groups and generates alkynylphosphonate and ynamide products in good to excellent yields. Both reactions can be scaled up to the gram scale without any decrease in the reaction yield and the reaction time is less compared to literature reports. The catalyst is recyclable and reused several times without any significant loss of reactivity.
Copper-Mediated oxidative decarboxylative coupling of arylpropiolic acids with dialkyl h-phosphonates in water
Li, Xiang,Yang, Fan,Wu, Yangjie,Wu, Yusheng
supporting information, p. 992 - 995 (2014/03/21)
An efficient, mild, and generally applicable protocol for copper-mediated oxidative decarboxylative coupling of arylpropiolic acids with dialkyl H-phosphonates in water has been developed. Note that the reaction could proceed smoothly under air at relativ
