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The Journal of Organic Chemistry|July 15, 2021
Organocatalytic Asymmetric α-Allylation and Propargylation of α-Branched Aldehydes with Alkyl HalidesMasanori YoshidaGene Regulation and Systems Biology|September 30, 2009
Gene regulation system of vasopressin and corticotropin-releasing hormoneMasanori YoshidaChemical Record (New York, N.Y.)|February 3, 2023
Asymmetric Synthesis of a Quaternary Carbon Stereogenic Center by Organocatalysis Using a Primary Amino Acid and Its SaltMasanori YoshidaThe Journal of Organic Chemistry|October 20, 2017
Asymmetric α-Allylation of α-Substituted β-Ketoesters with Allyl AlcoholsMasanori YoshidaOrganic Letters|February 14, 2003
Stereoselective synthesis of (Z)-2-fluoro-1-alkenyl(phenyl)iodonium tetrafluoroboratesMasanori Yoshida, Shoji Hara[Rinsho Ketsueki] the Japanese Journal of Clinical Hematology|November 9, 2020
[Genetic basis of subsequent malignant neoplasms]Masanori Yoshida, Motohiro KatoOrganic Letters|June 2, 2006
Stereoselective generation of (E)- and (Z)-2-fluoroalkylidene-type carbenoids from (2-fluoro-1-alkenyl)iodonium salts and their application for stereoselective synthesis of fluoroalkenesShoji Hara, Tong Guan, Masanori YoshidaOrganic & Biomolecular Chemistry|May 13, 2010
Asymmetric Michael addition of aldehydes to nitroalkenes using a primary amino acid lithium saltMasanori Yoshida, Atsushi Sato, Shoji HaraChemical Communications (Cambridge, England)|December 17, 2008
Primary amino acid lithium salt as a catalyst for asymmetric Michael addition of isobutyraldehyde with beta-nitroalkenesAtsushi Sato, Masanori Yoshida, Shoji HaraThe Journal of Organic Chemistry|November 6, 2007
Stereoselective synthesis of (E)- and (Z)-Fluoroalkenylboronates using 2-fluoroalkylideneiodonium ylides generated from (2-fluoro-1-alkenyl)iodonium saltsTong Guan, Masanori Yoshida, Shoji HaraPageof 9