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Peyman Salehi

Researcher at Shahid Beheshti University

Publications -  317
Citations -  6863

Peyman Salehi is an academic researcher from Shahid Beheshti University. The author has contributed to research in topics: Catalysis & Essential oil. The author has an hindex of 41, co-authored 309 publications receiving 6112 citations. Previous affiliations of Peyman Salehi include University of Gilan & University of Isfahan.

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Discovery of noscapine derivatives as potential β-tubulin inhibitors.

TL;DR: Two promising compounds (8h and 9c) were identified, whose relevant cytotoxicity was supposed to be correlated with that of tubulin binding affinity, which shed more lights onto structural modifications of noscapine toward the identification of more potent cytotoxic agents targeting tubulin.
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Synthesis and Catalytic Applications of Sulfonic Acid Group–Functionalized Nano- and Microsilica Structures

TL;DR: Sulfonic acid group-functionalized nano-and micro-silica with different sizes and shapes were synthesized in this paper, with an average size of 225nm and polysilicon micro-tubes with a diameter of 50 µm.
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Noscapine-derived β-amino alcohols as new organocatalysts for enantioselective addition of diethylzinc to aldehydes

TL;DR: In this paper, the synthesis of two derivatives of noscapine and their application as organocatalysts in the asymmetric addition of diethylzinc to aromatic aldehydes is reported.
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Essential Oil Composition and Antioxidant Activity of Salvia staminea Benth. Extracts

TL;DR: The essential oil composition and antioxidant activity of various extracts of Salvia staminea Benth from Iran were investigated in this article, where the major components were germacrene D (36.3 %), hexahydrofarnesylacetone (11.2 %), and α-copaene (7.0 %).
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Enantioselective Addition of Diethylzinc to Aromatic Aldehydes Catalyzed by Pyrolidine and Piperidine β-Amino Alcohols

TL;DR: In this paper, the enantioselective alkylation of aryl aldehydes by diethylzinc in the presence of catalytic amounts of several chiral pyrolidine-and piperidine-based amino alcohol ligands, synthesized from the reaction of (R)-2-amino-1-butanol and (S)-2.3-phenylpropan-1ol with appropriate dibromoalkanes, was studied.