1192541-79-9Relevant academic research and scientific papers
FeCl3 catalyzed tandem synthesis of optically pure sugar based benzimidazoles
Mishra, Sarita,Roy, Soumik,Ghosh, Rina,Dey, Diganta,Hazra, Banasri
, p. 197 - 211 (2020/03/19)
A chemo-selective synthesis of optically pure sugar based benzimidazole from reaction of glycal-2-carboxaldehyde and orthophenylene diamine by FeCl3 catalyzed tandem imination, cyclisation followed by green oxidation by aerial O2 is reported. Some selected tailor-made chiral benzimidazoles were screened for antimicrobial activity against clinically isolated drug-resistant bacteria, as well as fungi obtained from superficial dermal infections.
Synthesis of glycal-based chiral benzimidazoles by VO(acac) 2-CeCl3 combo catalyst and their self-aggregated nanostructured materials
Maiti, Dilip K.,Halder, Samiran,Pandit, Palash,Chatterjee, Nirbhik,De Joarder, Dripta,Pramanik, Nabyendu,Saima, Yasmin,Patra, Amarendra,Maiti, Prabir K.
supporting information; experimental part, p. 8086 - 8097 (2010/02/28)
(Figure Presented) VO(acac)2-CeCl3 combo catalyst has been developed for chemoselective cyclocondensation cum oxidation under mild reaction conditions toward synthesis of a new class of optically pure compounds, 2-(2′-C-3′,4′,6′-tri-O-benzyl/methyl-glycal)-1H- benzimidazoles. It involves an operationally simple synthetic protocol efficient for the syntheses of a wide range of chiral benzimidazoles in high yields without formation of undesired 1,2-disubstituted and pseudoglycal byproducts. Vanadium(V) is found as active oxidant for the chemical processes which is investigated by UV absorption spectroscopy. Highly ordered one-dimensional low molecular mass organic nanostructured materials are fabricated by nanocrystallization of the chiral nanoscale building blocks. Theoretical calculation by the B3LYP/6-31G** level of theory of the glycal-based chiral benzimidazoles shows out of planar geometry of the 1H-anthra[1,2-d] imidazole-6,11-dione moiety, which is responsible for the strong self-aggregation to generate ultralong nanostructured materials. We have also found nice agreement between the theoretical results with the experimental observation in 2D-NOESY experiments. The photophysical property of the solid nanostructured materials is also reported. 2009 American Chemical Society.
