Repository of Research and Investigative Information

Repository of Research and Investigative Information

Baqiyatallah University of Medical Sciences

Hollow Mesoporous Silica Sphere (HMSS) as a Recyclable Nano-catalyst in an Efficient One-Pot Multicomponent Synthesis of 2-Amino-3-Cyano-4H-Pyran Derivatives

(2020) Hollow Mesoporous Silica Sphere (HMSS) as a Recyclable Nano-catalyst in an Efficient One-Pot Multicomponent Synthesis of 2-Amino-3-Cyano-4H-Pyran Derivatives. Biointerface Research in Applied Chemistry. pp. 6640-6651. ISSN 2069-5837

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Abstract

Mesoporous material has a significant role in medicine, health care, environmental monitoring sensing the hazardous agents and fighting against viruses and bacteria. Nano-silica sphere is an important member of the mesoporous family that noticeably flourished in biology health care and other industrial applications. Efficient one-pot multicomponent syntheses of 2-amino-3-cyano-4H-pyranderivatives ere carried out over readily available and simply synthesized recyclable Hollo Mesoporous Silica Sphere (HISS). Comparable yields were encountered with better efficiency, lower cost, and shorter reaction time. Hence. superior catalytic activity, flexibility, ease of recovery, tuneable hole size. and high surface to volume ratio ere the major characteristics of the catalyst which distinguish this protocol from previously reported ones. The catalyst as characterized by X-ray diffraction (XRD). scanning electron microscopy (SEMI). transmission electron microscopy (TEM), Fourier transform infrared (FT-IR) techniques. and nitrogen absorption and desorption (BET) analyses.The results showed that the synthesizing of HMSS catalysts under a mild and green condition in which comparable yields ere encountered with better efficiency, lower cost. and shorter reaction with other major economic advantages.

Item Type: Article
Keywords: Hollow Mesoporous Silica Spheres HMSS Nano-catalyst Hydrogen bond catalysis 2-amino-3-cyano-4H-pyran controllable synthesis drug-delivery nanoparticles facile microspheres nanocatalyst fabrication adsorption particles water Chemistry
Page Range: pp. 6640-6651
Journal or Publication Title: Biointerface Research in Applied Chemistry
Journal Index: ISI
Volume: 10
Number: 6
Identification Number: https://doi.org/10.33263/briac106.66406651
ISSN: 2069-5837
Depositing User: مهندس مهدی شریفی
URI: http://eprints.bmsu.ac.ir/id/eprint/8447

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