Faculty of International Social Sciences

Ryosuke Masuda

  (増田 涼介)

Profile Information

Affiliation
Assistant Professor, Hiroyuki Kusama Laboratory, Gakushuin University
Degree
Ph.D. (Science)(Mar, 2022, Tokyo Institute of Technology)
Master (Science)(Mar, 2019, Tokyo Institute of Technology)

Contact information
ryosuke.masudagakushuin.ac.jp
Researcher number
30965794
ORCID ID
 https://orcid.org/0000-0001-5702-5485
J-GLOBAL ID
202101007403140978
researchmap Member ID
R000021053

External link

Papers

 15
  • Kyo Kikunami, Hiroyuki Kusama, Ryosuke Masuda
    Organometallics, Feb 22, 2026  Peer-reviewedLast authorCorresponding author
    The synthesis, structural characterization in the solid state, and reactivity of a selenazolidine and a six-membered-ring derivative, i.e., a 1,3-tetrahydroselenazine, that contain a C6F5 substituent are reported. The first crystallographic characterization of a 1,3-tetrahydroselenazine was accomplished by means of single-crystal X-ray diffraction analysis. Despite the structural analogy to C6F5-substituted imidazolidines, these selenium-containing heterocycles exhibit pronounced thermal stability and high resistance toward the formation of the corresponding (amino)(seleno)carbenes, highlighting fundamentally different reactivity patterns between imidazolidines and selenazolidines.
  • Tamaki Yano, Ryosuke Masuda, Hiroyuki Kusama
    Inorganic Chemistry, Oct 10, 2025  Peer-reviewedCorresponding author
    Although various types of selenoamides have already been developed, examples of derivatives bearing a third heteroatom that acts as a second reactive center have remained limited so far. Recently, we reported the synthesis, structure, and fundamental reactivity of (selenocarbamoyl)phosphines, which exhibit ambident reactivity at two principal sites, i.e., the phosphorus and selenium atoms, in reactions with electrophiles. Herein, we report the synthesis of the first crystalline (phosphino)(seleno)iminium salt from a (selenocarbamoyl)phosphine, as well as the double-functionalization of (selenocarbamoyl)phosphines. Notably, the critical importance of the selenium atom for chalcogen-selective methylation was corroborated by a combined experimental and theoretical comparison with its sulfur analogue. Furthermore, the transition-metal complex of a (selenocarbamoyl)phosphine, whose phosphorus and selenium atoms were modified to give the phosphine selenide and the palladium complex, was obtained as a double-functionalized product.
  • Ryosuke Masuda, Kento Ishida, Yuta Fujikura, Kanato Takahashi, Yuki Tanigawa, Yujiro Kato, Hiroyuki Kusama
    Organic Letters, Oct, 2025  Peer-reviewedLead author
    A palladium-catalyzed and photoinduced coupling reaction between acylsilanes and allylic alcohol derivatives based on the reactions of nucleophilic siloxycarbenes, generated via the light-induced isomerization of the corresponding aroyl-, heteroaroyl-, alkenoyl-, or alkanolysilanes, with electrophilic π-allylpalladium complexes was developed. The dual activation by light and Pd(0) enables the coupling to proceed at temperatures below ambient temperature with a broad substrate scope and high functional-group tolerance.
  • Kohei Yamaguchi, Ryosuke Masuda, Kento Ishida, Hiroyuki Kusama
    Chemistry Letters, Apr, 2025  Peer-reviewed
  • Ryosuke Masuda, Tamaki Yano, Hiroyuki Kusama
    Chemical Communications, 61(26) 4955-4958, Mar 10, 2025  Peer-reviewedLead authorCorresponding author
    Crystalline (selenocarbamoyl)phosphines, which exhibited dual reactivity on two principal sites, i.e., on the phosphorus and the selenium atoms, were synthesized.

Presentations

 27

Research Projects

 7