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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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Factors influencing sperm retrieval following testicular sperm extraction in nonobstructive azoospermia patients

TL;DR: Some parameters, including testicular histopathology patterns, FSH levels, testicular volume, and method of TESE surgery, may be able to predict the chances of obtaining spermatozoa in patients with NOA, but despite the efficiency of some predictive models, the hope of retrieving any functioning spermutozoa may be sufficient to disregard predictive factors of the success of intracytoplasmic sperm injection.
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Acetylcholinesterase-inhibitory activity of Iranian plants: Combined HPLC/bioassay-guided fractionation, molecular networking and docking strategies for the dereplication of active compounds

TL;DR: In vitro analysis showed that the subfraction F10f was the most potent inhibitor against the activity of AChE with an IC50 value of 25.2&mgr;g/mL and good docking scores of its constituents confirming its high activity.
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Water-Accelerated Selective Synthesis of 1,2-Disubstituted Benzimidazoles at Room Temperature Catalyzed by Br⊘nsted Acidic Ionic Liquid

TL;DR: An environmentally benign method for the rapid and selective synthesis of 2-aryl-1-arylmethyl-1H-1,3-benzimidazoles by the reaction of o-phenylenediamines and aromatic aldehydes in the presence of 1-methylimidazolium triflouroacetate ([Hmim]TFA) at room temperature under aqueous conditions is described in this article.
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Catalytic friedel-crafts acylation of alkoxy benzenes by ferric hydrogensulfate

TL;DR: Friedel-Crafts acylation of alkoxy benzenes is achieved efficiently by reaction with aliphatic acid anhydrides in the presence of catalytic amounts of ferric hydrogensulfate, Fe(HSO4)3, in nitromethane as mentioned in this paper.
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Facile conversion of alcohols into n-substituted amides by magnesium hydrogensulfate under heterogeneous conditions

TL;DR: Different classes of alcohols react efficiently with nitriles in the presence of magnesium hydrogensulfate, Mg(HSO4)2, to produce amides in high yields as discussed by the authors.