Skip navigation


Welcome to the Institutional Repository of Progressive Education Society's Modern College of Arts, Science and Commerce (Autonomous), Shivajinagar, Pune-5. The repository is launched as a part of Golden Jubilee celebrations of the establishment of the college in February 2020. It comprises of the Institutional and Faculty publications, Research Papers, Conference Proceedings, E-contents developed by the faculty members, Theses and Dissertations, Project Rreports, Assignments, Newspaper Clippings, Question Papers, College Magazines, Annual Report, E-bulletin etc.

Thank you for visiting the Institutional Repository. Your comments and suggestions for improving this service are most welcome. Please send your feedback to the Archive Administrator (librarian@moderncollegepune.edu.in)

Visit : MCASC Library Website and WebOPAC

Please use this identifier to cite or link to this item: http://hdl.handle.net/123456789/246
Title: Selective N-acetylation with concurrent S-oxidation of o-amino thiol at ambient conditions over Ce doped ZnO composite nanocrystallites
Authors: Jagtap, Rohidas
Sakate, Sachin
Pardeshi, Satish
Keywords: CHEMISTRY
o-amino thiolCe doped ZnO nanospheresLewis acid sitesN-acetylation and S-oxidationSubstrate scope
Issue Date: May-2018
Publisher: ELSEVIER Molecular Catalysis Volume 450, May 2018, Pages 19-28
Abstract: The oxidative SS coupling of thiol to disulfide is an imperative chemical transformation in the domain of biological processes and also finds numerous chemical applications. The CeO2 and ZnO are significant catalysts for oxidation of thiol to disulfide and N-acetylation of amines respectively. Dithiobis(phenylene)bis(benzyldeneimine) moiety containing N-acetyl and disulfide functional groups is a potential antimicrobial agent with Leishmanicidal and antihyperlipidemic activities. Herein, we report a synchronized catalytic application of Ce doped ZnO (Ce-ZnO) and CeO2-Ce-ZnO composites for selective synthesis of Dithiobis(phenylene)bis(benzyldeneimine) from o-amino thiol. The Ce-ZnO samples were synthesized by simple co precipitation method by calcination of hydroxide precursors at 400 °C to get 0–10% Ce-ZnO nanocrystallites. The formation of CeO2-Ce-ZnO composite material was observed beyond 1.5% Ce concentration. The synthesized materials were well characterized by IR, XRD, DRS spectroscopy and SEM-EDS analysis. The application of Ce doped ZnO as an efficient catalyst towards the selective N-acetylation and concurrent S-oxidation of o-amino thiol to afford Dithiobis(phenylene)bis(benzyldeneimine) at ambient temperature in acetonitrile was deliberated. Among all screened catalysts, the maximum selectivity was found for 7.5% Ce-ZnO as CeO2-Ce-ZnO composite catalyst. Lewis acidic property of catalyst supported probable mechanism for achieved dual transformations. Also, the 7.5% Ce-ZnO catalyst has demonstrated a versatile SS coupling ability for variety of thiol substrates with excellent stability.
URI: https://www.sciencedirect.com/science/article/abs/pii/S2468823118301044
http://hdl.handle.net/123456789/246
Appears in Collections:Research Papers

Files in This Item:
File Description SizeFormat 
R.M.JAGTAP 2018 3.pdf177.3 kBAdobe PDFView/Open


Items in DSpace are protected by copyright, with all rights reserved, unless otherwise indicated.