1093239-16-7Relevant academic research and scientific papers
A clean synthesis of spiro[indoline-3,9′-xanthene]trione derivatives
Ahadi, Somayeh,Khavasi, Hamid Reza,Bazgir, Ayoob
, p. 1328 - 1330 (2008)
A simple, clean and efficient method for the synthesis of spiro[indoline-3,9′-xanthene]trione derivatives and spiro[acenaphthene-l, 9′-xanthene]-l′,2,8′(2′H,5′H)-trione by condensation reaction of dimedone and isatins or acenaphthene in aqueous media is reported.
Fe3O4@Propylsilane@Histidine[HSO4 -] magnetic nanocatalysts: Synthesis, characterization and catalytic application for highly efficient synthesis of xanthene derivatives
Mousavifar, Seyyedeh Masoumeh,Kefayati, Hassan,Shariati, Shahab
, (2018)
The surface of Fe3O4 magnetic nanoparticles (MNPs) was modified by chloropropylsilane and histidine. The imidazole group of prepared Fe3O4@Propylsilane@Histidine MNPs converted to imidazolium hydrogen sulfate gr
Zinc(II)-poly(urea-formaldehyde) supported on magnetic nanoparticles: A hybrid nanocatalyst for green synthesis of spiropyrans, spiroxanthenes, and spiropyrimidines
Bodaghifard, Mohammad Ali,Mousavi, Zahra
, (2020/07/13)
Immobilization of metal ions onto inorganic supports has very interesting biological, industrial, and catalysis applications. In this study, CoFe2O4@SiO2@PUF@Zn(OAc)2 nanostructure was successfully fabricated by
Zinc oxide surface: a versatile nanoplatform for solvent-free synthesis of diverse isatin derivatives
Kothandapani, Jagatheeswaran,Ganesan, Asaithampi,Mani, Ganesh Kumar,Kulandaisamy, Arockia Jayalatha,Rayappan, John Bosco Balaguru,Selva Ganesan, Subramaniapillai
supporting information, p. 3472 - 3475 (2016/07/18)
Multicomponent reactions performed on the surface of nanostructured zinc oxide gave 3,3-bis(indolyl)indolin-2-one and xanthene derivatives with excellent yields. Both Lewis acidic (Zn2+) and basic (O2?) sites on the surface of zinc oxide were utilized to perform the aforementioned transformations. The significance of surface catalysis was further proved by performing the experiment with surface masked zinc oxide. The developed zinc oxide nanocatalyst was reusable up to five times without significant loss in its activity.
