1008105-84-7Relevant academic research and scientific papers
A straightforward conversion of aurones to 2-benzoylbenzofurans: Transformation of one class of natural products into another
Yahiaoui, Samir,Peuchmaur, Marine,Boumendjel, Ahcne
supporting information; experimental part, p. 7703 - 7707 (2011/10/12)
The naturally occurring aurones (2-benzylidene-3(2H)-benzofuran-3-ones) can be easily converted to another class of natural products 2-benzoylbenzo[b] furans, via an effective reduction, acid-mediated rearrangement, and oxidation cascade. This easy conver
Water-promoted, silver-phosphine complex-catalyzed stereoselective cyclization of 2-(1-Hydroxy-3-arylprop-2-ynyl)phenols leading to a highly efficient approach to aurones
Lin, Mingdeng,Yu, Min,Han, Chengyan,Li, Chao-Jun,Yao, Xiaoquan
, p. 3228 - 3236 (2011/09/30)
Silver-phosphine complexes can be utilized as highly efficient catalysts for the cyclization of 2-(1-hydroxy-3-arylprop-2-ynyl)phenols (1) to give product 2, key intermediates to synthesize aurones (4), with good yields and stereoselectivities in water-to
Ligand-promoted reaction on silver nanoparticles: Phosphine-promoted, silver nanoparticle-catalyzed cyclization of 2-(1-hydroxy-3-arylprop-2-ynyl) phenols
Yu, Min,Lin, Mingdeng,Han, Chengyan,Zhu, Li,Li, Chao-Jun,Yao, Xiaoquan
supporting information; experimental part, p. 6722 - 6725 (2011/03/21)
A highly efficient annulation of 2-(1-hydroxy-3-arylprop-2-ynyl)phenols leading to the key intermediates to synthesize aurones was catalyzed by silver nanoparticles/carbon black-supported silver nanoparticles. In the presence of phosphine ligand, both the
Versatile and expeditious synthesis of aurones via AuI-catalyzed cyclization
Harkat, Hassina,Blanc, Aurelien,Weibel, Jean-Marc,Pale, Patrick
, p. 1620 - 1623 (2008/09/16)
(Chemical Equation Presented) Aurones are conveniently formed in a three-step procedure including a goldI-catalyzed cyclization of 2-(1-hydroxyprop-2-ynyl)phenols as a highly regio- and stereoselective key step. A wide diversity of derivatives can be obtained starting from substituted salicylaldehydes. Synthesis of natural 4,6,3′,4′-tetramethoxyaurone and structure revision of two natural products (dalmaisione D and 4′-chloroaurone) were achieved.
