50597-28-9Relevant academic research and scientific papers
One-pot synthesis of 3,4-disubstituted coumarins under catalysis of Mn 3O4 nanoparticles
Sun, Huayin,Zhang, Yonghui,Guo, Fengfeng,Yan, Yizhe,Wan, Changfeng,Zha, Zhenggen,Wang, Zhiyong
, p. 480 - 483 (2012/03/09)
The one-pot synthesis of 3,4-disubstituted coumarins from substituted 2-(hydroxymethyl)phenols with β-keto esters catalyzed by Mn 3O4 nanoparticles was developed. A series of 3,4-disubstituted coumarin derivatives were obtained in good yields. A new method for the one-pot synthesis of 3,4-disubstituted coumarins from substituted 2-(hydroxymethyl)phenols with β-keto esters catalyzed by Mn 3O4 nanoparticles has been developed. A series of 3,4-disubstituted coumarin derivatives were synthesized from substituted 2-(hydroxymethyl)phenols and β-keto esters in good yields. Copyright
Modification of Photochemical Reactivity by Cyclodextrin Complexation: Product Selectivity in Photo-Fries Rearrangement
Syamala, M. S.,Rao, B. Nageswer,Ramamurthy, V.
, p. 7234 - 7242 (2007/10/02)
Cyclodextrin encapsulation, both in the solid state and in aqueous solution brings about a remarkable regulation of the photo-Fries rearrangement of phenyl esters and anilides.In comparison to the non-selective mixture of ortho and para-rearranged isomers along with the deacylated product obtained in organic solvents, the solid β-cyclodextrin complexes of unsubstituted esters and anilides show a remarkable 'ortho-selectivity'.An impressive 'regio-selectivity' among the two ortho-rearranged isomers is observed for meta-substituted esters and anilides upon irradiation as β-cyclodextrin complexes.Specific orientations of the unsubstituted and meta-substituted esters and anilides in the β-cyclodextrin cavity are suggested to be responsible for the observed selectivity.
The Fries Rearrangement as an Equilibrium Reaction
Effenberger, Franz,Gutmann, Rainer
, p. 1089 - 1102 (2007/10/02)
The Fries rearrangement of arylbenzoates 1, in 1,2-dichloroethane in the presence of trifluoromethanesulfonic acid (TFMS) as catalyst, to ortho- and para-hydroxyaryl ketones (2 and 3, resp.) is reversible at 170 deg C; an equilibrium of the compounds 1, 2, and 3 is established.The equilibrium is achieved starting from the aryl esters 1 as well as from the hydroxyaryl ketones 2 and 3, respectively.The higher stability of the ortho-compounds 2 compared to the para-compounds 3 can be explained by greater resonance interaction between the carbonyl group and the aromatic ring in 2.The torsion angles Θ, which are good indicators of this interaction, can be determined from 13C NMR spectra.A dissociative mechanism is proposed for the acryl group migration.
