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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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Primary amino acid lithium salt as a catalyst for asymmetric Michael addition of isobutyraldehyde with beta-nitroalkenes.

TL;DR: Phenylalanine lithium salt was found to be an effective catalyst for asymmetric Michael addition of isobutyraldehyde with beta-nitroalkenes to give quaternary carbon-containing nitroalkanes.
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Electrochemical fluorination of β-dicarbonyl compounds using p-iodotoluene difluoride as a mediator

TL;DR: In this paper, the fluorine atom was introduced into the α position of β-dicarbonyl compounds using iodotoluene difluoride as the mediator.
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Direct asymmetric α-allylation of α-branched aldehydes by two catalytic systems with an achiral Pd complex and a chiral primary α-amino acid.

TL;DR: Direct α-allylation of α-branched aldehydes was successfully carried out with a readily available allyl ester by combined use of two catalytic systems: Tsuji-Trost allylation reaction with an achiral palladium complex and enamine catalysis with a chiral primary α-amino acid.
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Stereoselective synthesis of fluoroalkenes via (Z)-2-fluoroalkenyliodonium salts

TL;DR: Pd-catalyzed cross-coupling reactions of 3 gave better results than that of 1, and a variety of ( Z )-2-fluoro-1-alkene derivatives were synthesized in good yields.
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Asymmetric Michael addition of aldehydes to nitroalkenes using a primary amino acid lithium salt.

TL;DR: The addition of aldehydes to nitroalkenes was successfully carried out by asymmetric catalysis with L-phenylalanine lithium salt, giving gamma-nitroaldehydes in good yields with high enantioselectivity.