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Synthesis and characterization of terbium doped TiO2 nanoparticles and their use as recyclable and reusable heterogeneous catalyst for efficient and environmentally sustainable synthesis of spiroannulated indolo[3,2-c]quinolines- mimetic scaffolds of isocryptolepine
Authors:Kanchan Verma  Yogesh Kumar Tailor  Sarita Khandelwal  Monu Agarwal  Esha Rushell  Sakshi Pathak  Yogita Kumari  Kamlendra Awasthi  Mahendra Kumar
Institution:1. Department of Chemistry, University of Rajasthan, Jaipur, India;2. Soft Materials Lab, Department of Physics, Malaviya National Institute of Technology, Jaipur, India
Abstract:An efficient and environmentally sustainable domino protocol has been presented for the synthesis of structurally diverse spiroannulated indolo3,2-c]quinolines involving three component sequential reaction of phenylhydrazine, o-aminoacetophenone and cyclic ketones using nanostructured terbium doped TiO2 as recyclable and reusable heterogeneous catalyst. The nanostructured catalyst was synthesized successfully and characterized by X-ray Diffraction (XRD), transmission electron microscopy (TEM), EDX and Fourier transform infra-red spectroscopy (FTIR). The substitution of Ti+4 with Tb+3 and the formation of Ti-O-Tb bonds as a result of doping of Terbium with TiO2 NPs increases the catalytic efficiency and facilitates the reaction to provide the products in excellent yields. The present protocol with special features; operational simplicity, atom-economy, mild reaction conditions, environmental sustainability and high synthetic efficiency with recyclability and reusability of catalyst has been reported for the first time to synthesize spiroannulated indoloquinolines and expecting to provide the library of promising new leads in drug discovery research.
Keywords:isocryptolepine  multicomponent reactions  nanocatalysis  nanostructured terbium doped TiO2  Spiroannulated indolo[3  2-c]quinolines
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