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Masanori Yoshida

Researcher at Hokkaido University

Publications -  63
Citations -  812

Masanori Yoshida is an academic researcher from Hokkaido University. The author has contributed to research in topics: Michael reaction & Catalysis. The author has an hindex of 20, co-authored 62 publications receiving 768 citations.

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Stereoselective synthesis of (E)-β-fluoro-α,β-unsaturated esters by carbonylation of (E)-2-fluoro-1-iodo-1-alkenyliodonium salts

TL;DR: In this article, the palladium-catalyzed carbonylation reaction of (E )-2-fluoro-1-iodo-1alkenyliodonium salts obtained by the addition of iodotoluene difluoride to 1-alkynes was described.
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Facile Synthesis of Iodonium Salts by Reaction of Organotrifluoroborates with p-Iodotoluene Difluoride

TL;DR: A simple and easy method for the synthesis of various iodonium salts was developed, and involves the reaction of potassium organotrifluoroborates with P-iodotoluene difluors under mild conditions.
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Asymmetric Michael Addition of Malonates to Enones Catalyzed by a Primary β-Amino Acid and Its Lithium Salt

TL;DR: Highly enantioselective Michael addition of malonates to enones was achieved using a mixed catalyst consisting of a primary β-amino acid, O-TBDPS (S)-β-homoserine, and its lithium salt under mild reaction conditions.
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Direct synthesis of alkynyl(phenyl)iodonium salts from alk-1-ynes.

TL;DR: Alkynyliodonium salts can be directly prepared from alk-1-ynes by the reaction with iodosobenzene, tetrafluoroboric acid, and a catalytic amount of HgO.
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Asymmetric Michael addition of malonates to enones catalyzed by a siloxy amino acid lithium salt

TL;DR: Siloxy amino acid lithium salt, O - tert -butyldiphenylsilyl l -serine lithium salt was found to be an effective catalyst for the asymmetric Michael addition reaction of malonates to enones as discussed by the authors.