研究者業績

原田 慎吾

ハラダ シンゴ  (Shingo Harada)

基本情報

所属
千葉大学 大学院薬学研究院薬化学研究室 講師
学位
博士(薬学)(京都大学)

研究者番号
50722691
ORCID ID
 https://orcid.org/0000-0002-8373-4143
J-GLOBAL ID
202001021127545573
researchmap会員ID
R000006337

1985年11月21日生まれ


論文

 53
  • Kyosuke Yamanishi, Gin Ashihara, Shinya Shiomi, Shingo Harada, Mariko Kitajima, Hiromitsu Takayama, Hayato Ishikawa
    Journal of the American Chemical Society 2024年9月18日  
  • Shingo Harada, Hiroki Takenaka, Tsubasa Ito, Haruki Kanda, Tetsuhiro Nemoto
    Nature Communications 2024年3月14日  筆頭著者責任著者
  • Shingo Harada, Shumpei Hirose, Mizuki Takamura, Maika Furutani, Yuna Hayashi, Tetsuhiro Nemoto
    Journal of the American Chemical Society 146(1) 733-741 2023年12月27日  筆頭著者責任著者
  • Daria E. Kim, Yingchuan Zhu, Shingo Harada, Isaiah Aguilar, Abbigayle E. Cuomo, Minghao Wang, Timothy R. Newhouse
    Journal of the American Chemical Society 145(8) 4394-4399 2023年2月15日  
  • Tsukasa Furuya, Kotaro Ikeda, Shingo Harada, Tetsuhiro Nemoto
    Chemical and Pharmaceutical Bulletin 71(2) 107-110 2023年2月1日  責任著者
    C-H insertion and amide insertion reactions using metal-carbene species provide a powerful synthetic method for direct functionalization of kinetically inert or thermodynamically stable chemical bonds. Our group previously developed an amide insertion reaction using a rhodium-dimer complex, constructing an array of nitrogen-bridged heterocycles. Another research group reported C-H insertion reactions using structurally related substrates and rhodium catalysts. Detailed mechanistic studies were not provided, however, and therefore, the origin of the chemoselectivity was ambiguous. Here we describe our theoretical investigation of the chemoselectivity between the amide insertion reaction and C-H functionalization. An energy gap of the identified transition states in the reaction coordinates could support the reported experimental results and the observed chemoselectivity. Moreover, frontier molecular orbital analysis revealed that functionalities adjacent to the metal-carbene species could affect orbital populations and their energy levels, resulting in the construction of a completely distinctive ring system.

講演・口頭発表等

 19

共同研究・競争的資金等の研究課題

 5