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Marcello Tiecco

Researcher at University of Perugia

Publications -  306
Citations -  5180

Marcello Tiecco is an academic researcher from University of Perugia. The author has contributed to research in topics: Nucleophile & Enantioselective synthesis. The author has an hindex of 38, co-authored 306 publications receiving 4944 citations. Previous affiliations of Marcello Tiecco include Autonomous University of Madrid & Sapienza University of Rome.

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Journal ArticleDOI

Selenium‐Catalyzed Conversion of Vinyl Halides into α‐Alkoxy Acetals.

TL;DR: The reaction of the vinyl bromide (I) with phenylselenenyl chloride (II) in MeOH (III) proceeds via the methoxyselenensylation product (IV), which suffers solvolysis to give the alkoxy acetal (V) and its bromo derivative (VI) as mentioned in this paper.
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Homolytic aromatic ipso substitutions in benzothiazoles by the nucleophilic 1-adamantyl radical

TL;DR: In this paper, 1-Adamantyl radicals react with several 2-substituted benzothiazoles to afford 2-(1-adamantyl)-benzothiazole as a result of a homolytic substitution occurring at the ipso position.
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New Synthesis of Isoxazolidines from the Selenium‐Induced Cyclization of O‐Allyl Hydroxylamines.

TL;DR: The reaction of O-allyl hydroxylamines with phenylselenenyl sulfate, generated from the oxidation of diphenyl diselenide with ammonium persulfate, easily affords N-alkyl isoxazolidines as the result of a cyclization reaction through the formation of a carbon-nitrogen bond as mentioned in this paper.
Journal ArticleDOI

Efficient Asymmetric Selenomethoxylation and Selenohydroxylation of Alkenes with a New Sulfur Containing Chiral Diselenide.

TL;DR: In this paper, the synthesis of a chiral non-racemic sulfur containing diselenide is described, and the electrophilic selenium reagent is used to effect selenomethoxylation and the selenohydroxylation of alkenes.
Proceedings ArticleDOI

Zinc-Mediated Synthesis of Vinyl Selenide and GPx-like activity

TL;DR: Phenyl selenol and the zinc-selenolate PhSeZnCl can be conveniently employed for the stereospecific and stereoselective synthesis of vinyl selenides in eco-compatible conditions.