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Dariush Khalili

Researcher at Shiraz University

Publications -  55
Citations -  1093

Dariush Khalili is an academic researcher from Shiraz University. The author has contributed to research in topics: Catalysis & Oxide. The author has an hindex of 13, co-authored 53 publications receiving 856 citations.

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Synthesis, antibacterial, antifungal and antiviral activity evaluation of some new bis-Schiff bases of isatin and their derivatives.

TL;DR: These newly synthesized bis-Schiff bases were tested for their antibacterial and antifungal activities and did not display activity against S. cerevisiae or C. albicans when screened for antiviral activity against a panel of DNA and RNA viruses.
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Graphene oxide: a promising carbocatalyst for the regioselective thiocyanation of aromatic amines, phenols, anisols and enolizable ketones by hydrogen peroxide/KSCN in water

TL;DR: Graphene oxide (GO), as a heterogeneous carbocatalyst, catalyzes the direct thiocyanation of a variety of arenes including aromatic amines, phenols, anisols and carbonyl compounds that possessing α-hydrogen in the presence of hydrogen peroxide and KSCN in water as a green media as discussed by the authors.
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Easily Prepared Azopyridines As Potent and Recyclable Reagents for Facile Esterification Reactions. An Efficient Modified Mitsunobu Reaction

TL;DR: 4,4'-azopyridine was found to be the most suitable one for esterification and thioesterification reactions and promises to provide general and complementary solutions for separation problems in Mitsunobu reactions without restricting the reaction scope.
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Graphene oxide: a reusable and metal-free carbocatalyst for the one-pot synthesis of 2-amino-3-cyanopyridines in water

TL;DR: In this article, a one-pot synthesis of 2-amino-3-cyanopyridine derivatives has been demonstrated through the multicomponent reaction of aldehydes, ketones, malononitrile, and ammonium acetate using graphene oxide as a heterogeneous catalyst in water as a green medium.
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Synthesis of some mono- and bis-spiro-β-lactams of benzylisatin

TL;DR: In this article, some new mono- and bis-spiro-β-lactams of benzylisatin were prepared by Staudinger's ketene-imine [2+2] cycloaddition reaction.